Unless otherwise specified, all technical data relate to an ambient temperature of 25°C
0.10 μF to 1500 μF
±10%; ±20%
2
4
6
10
16
20
25
35
50
1.4
2.7
4
7
10
13
17
23
33
2.6
5.2
8
13
20
26
32
46
65
1.7
3.4
5
8
13
16
20
28
40
-55°C to +125°C
44
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or available
online at www.kyocera-avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
042621
–
high reliability tantalum capacitors
–
TBJ SERIES
COTS-Plus
CAPACITANCE AND RATED VOLTAGE, VR (VOLTAGE CODE) RANGE (LETTER DENOTES CASE SIZE)
Capacitance
µF
Code
0.10
0.15
0.22
0.33
0.47
0.68
1.0
1.5
104
154
224
334
474
684
105
155
A(8000)
A(10000)
A(8000)
A(12000)
A(10000)
A(8000)
A(1800, 5500)
B(5000)
A(3500, 5000)
B(4500)
A(2000, 4000)
B(800, 3100)
A(1500, 2500)
B(60, 2500)
C(2500)
A(1000, 3000)
B(500, 2800)
C(500, 2500)
B(800, 2500)
C(1800)
D(1100)
B(600, 2300)
C(375, 1600)
D(1100)
B(350)
C(300, 1500)
D(200, 900)
C(350, 1500)
D(150, 900)
C(125, 200)
D(70, 900)
D(125, 900)
E(100, 900)
D(150, 900)
E(100, 300)
V(45, 75)
E(100, 150)
V(75, 150)
A(12000)
A(10000)
A(14000)
A(12000)
A(3000,
10000)
A(6500)
B(6000)
A(3000, 5300)
B(5000)
A(2500)
B(1300, 4000)
A(1800, 4000)
B(750, 3000)
C(3000)
A(1000)
B(600, 2500)
C(700, 2400)
B(1000, 2100)
C (500, 1900)
B(500, 2000)
C(400, 1700)
D(1100)
B(400, 600)
C(150, 1600)
D(200, 900)
C(300, 1500)
D(100, 900)
A(7000, 14000)
A(6000, 10000)
B(7500)
A(8000)
B(6500)
A(3000, 7500)
B(1800, 6500)
A(7000)
B(900, 4500)
C(3500)
A(1000, 1500)
B(750, 3500)
C(3500)
A(2800)
B(1500, 2800)
C(2500)
B(700, 2800)
C(500, 2000)
D(1400)
C (500, 1800)
D(1200)
C(220, 300)
D(300, 1000)
C(275, 1400)
D(200, 900)
D(100, 900)
E(300, 900)
2V (e)
4V (G)
6V (J)
10V (A)
Rated Voltage DC (V
R
) at 85ºC
15V (H)
16V (C)
20V (D)
25V (E)
35V (V)
A(24000)
A(21000)
A(6000, 18000)
A(6000, 15000)
A(6000, 12000)
B(4000, 10000)
A(6000, 8000)
B(8000)
A(3000, 7500)
B(2000, 6500)
A(7500)
B(2500, 5200)
C(4500)
A(1500, 4500)
B(2000, 4200)
C(1000, 3500)
B(1000, 3500)
C(700, 2500)
B(700, 3100)
C(600, 2200)
D(500, 1500)
C(350, 1800)
D(500, 1300)
C (600, 1600)
D (300,1000)
E(200, 250)
C(350, 1400)
D(300, 900)
D(400, 900)
E(300, 900)
D(300, 900)
E(100, 250)
V(200)
E(200, 250)
V(200, 400)
50V (T)
A(22000)
A(9000, 21000)
B(17000)
A(7000, 18000)
B(14000)
B(12000)
C(8000)
A(7900)
C(7000)
C(2500, 6000)
C(1500, 5000)
D(4000)
D(1200, 2500)
2.2
225
A(8000)
A(8000)
A(1800, 8000)
B(5500)
3.3
335
A(8000)
B(5500)
A(1400, 5000)
B(4500)
A(1800, 4000)
B(3500)
A(1800, 3000)
B(2500)
A(1000, 3200)
B(450, 2800)
C(2500)
B(700, 2400)
C(300, 1000)
A(700, 1700)
B(250, 1800)
C(150, 1600)
D(1100)
B(250, 350)
C(200, 1200)
D(100, 900)
B(600)
C(80, 1200)
D(100, 900)
B(400)
C(200, 1200)
D(100, 900)
E(125)
D(150, 900)
E(100)
D(150, 900)
E(100, 900)
D(150, 900)
E(60, 900)
V(60, 100)
E(50, 900)
V(60, 100)
B(5000)
D(800, 2000)
4.7
475
A(8000)
B(5500)
A(1800, 5000)
B(4500)
A(1500, 4000)
B(3500)
A(1500, 3500)
B(3500) C(3000)
A(500, 3000)
B(375, 2500)
C(2200)
B(4000)
D(300, 1500)
6.8
685
B(5500)
D(500, 1000)
E(400, 500)
V(650)
D(600)
E(250, 600)
V(390, 600)
10
106
B(4000)
15
156
B(3500)
22
226
33
336
A(3000)
C(2200)
A(600)
B(600, 2200)
A(800)
B(250, 350)
C(300, 1600)
D(1100)
B(250, 1800)
C(150, 1600)
D(900)
B(250, 400)
C(150, 900)
D(900)
C(50, 90)
D(50, 900)
C(70, 1200)
D(100, 900)
E(100)
D(45, 50)
E(100, 900)
V(100)
D(45, 60)
E(50, 900)
V(55, 100)
E(45, 60)
V(35, 40)
V(40, 50)
D(900)
47
476
A(500)
D(100, 200)
E(70, 250)
D(70, 900)
E(150, 900)
D(85, 100)
E(100, 150)
V(85, 200)
E(300)
V(80)
D(250, 900)
E(80, 100)
E(125, 200)
V(95)
68
686
D(1100)
V(150, 200)
100
107
A(1400)
B(200, 1600)
B(150)
B(150, 200)
D(45)
B(250)
C(70,80)
D(40,900)
C(100)
D(35, 45)
D(35)
D(35, 50)
E(35, 50)
E(30, 40)
D(100)
E(50)
V(30, 40)
D(45, 100)
E(35)
D(45, 60)
E(40, 60)
E(60)
V(25, 35)
E(50, 75)
V(50, 75)
V(100)
150
157
220
227
330
470
680
1000
1500
337
477
687
108
158
Available Ratings: ESR limits quoted in brackets (mOhms)
Note for designers - for the highlighted ratings, higher voltage options are now
available in the same case size and are recommended for new designs.
Notes: Voltage ratings are minimum values. KYOCERA AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or available
online at www.kyocera-avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
062620
45
–
high reliability tantalum capacitors
–
TBJ SERIES
COTS-Plus
RATING & PART
NUMBER REFERENCE
COTS-Plus P/N
TBJB157*002L
#@0^++
TBJB227*002C#@0^++
TBJB227*002L#@0^++
TBJD227*002L#@0^++
TBJD477*002L#@0^++
TBJD687*002C#@0^++
TBJD687*002L#@0^++
TBJE687*002C#@0^++
TBJE687*002L#@0^++
TBJE108*002C#@0^++
TBJE108*002L#@0^++
TBJD158*002L#@0^++
TBJE158*002L#@0^++
TBJV158*002C#@0^++
TBJV158*002L#@0^++
TBJA225*004C#@0^++
TBJA475*004C#@0^++
TBJB685*004C#@0^++
TBJB106*004C#@0^++
TBJB156*004C#@0^++
TBJA336*004C#@0^++
TBJC336*004C#@0^++
TBJA476*004L#@0^++
TBJC686*004C#@0^++
TBJD686*004C#@0^++
TBJA107*004C#@0^++
TBJB107*004C#@0^++
TBJB107*004L#@0^++
TBJB157*004L#@0^++
TBJC157*004C#@0^++
TBJC157*004L#@0^++
TBJD227*004C#@0^++
TBJD227*004L#@0^++
TBJC337*004L#@0^++
TBJD337*004C#@0^++
TBJD337*004L#@0^++
TBJD477*004C#@0^++
TBJD477*004L#@0^++
TBJE477*004L#@0^++
TBJD687*004C#@0^++
TBJD687*004L#@0^++
TBJE687*004C#@0^++
TBJE687*004L#@0^++
TBJE108*004L#@0^++
TBJV108*004C#@0^++
TBJV108*004L#@0^++
TBJE158*004C#@0^++
TBJE158*004L#@0^++
TBJV158*004C#@0^++
TBJV158*004L#@0^++
Cap
@
120Hz
μF
@
25ºC
150
220
220
220
470
680
680
680
680
1000
1000
1500
1500
1500
1500
2.2
4.7
6.8
10
15
33
33
47
68
68
100
100
100
150
150
150
220
220
330
330
330
470
470
470
680
680
680
680
1000
1000
1000
1500
1500
1500
1500
DC Rated
Voltage
V
@
+85ºC
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
Parametric Specifications by Rating per MIL-PRF-55365/4
DCL max
DF Max
ESR
+(85/125)
@
100kHz
+25ºC
+85ºC
+125ºC
+25ºC
ºC
Ohms
@
+25ºC
0.15
0.2
0.15
0.045
0.035
0.05
0.035
0.05
0.035
0.04
0.03
0.1
0.05
0.04
0.03
8
8
5.5
4
3.5
3
2.2
0.5
1.6
1.1
1.4
1.6
0.2
0.25
0.08
0.07
0.9
0.04
0.1
0.045
0.035
0.1
0.045
0.035
0.06
0.045
0.06
0.04
0.06
0.035
0.025
0.075
0.05
0.075
0.05
-55ºC
(%)
14
21
21
12
12
21
21
14
14
20
20
90
28
28
28
9
9
9
9
9
9
9
12
10
9
42
12
12
12
10
10
12
12
12
12
12
16
16
16
20
20
14
14
20
21
20
42
42
42
42
Power
Dissipation
W
0.085
0.085
0.085
0.150
0.150
0.150
0.150
0.165
0.165
0.165
0.165
0.150
0.165
0.250
0.250
0.075
0.075
0.085
0.085
0.085
0.075
0.110
0.075
0.110
0.150
0.075
0.085
0.085
0.085
0.110
0.110
0.150
0.150
0.110
0.150
0.150
0.150
0.150
0.165
0.150
0.150
0.165
0.165
0.165
0.250
0.250
0.165
0.165
0.250
0.250
Case
B
B
B
D
D
D
D
E
E
E
E
D
E
V
V
A
A
B
B
B
A
C
A
C
D
A
B
B
B
C
C
D
D
C
D
D
D
D
E
D
D
E
E
E
V
V
E
E
V
V
(μA)
3
4.4
4.4
4.4
9.4
13.6
13.6
13.6
13.6
20
20
30
30
30
30
0.088
0.188
0.272
0.4
0.6
1.32
1.32
1.88
2.72
2.72
4
4
4
6
6
6
8.8
8.8
13.2
13.2
13.2
18.8
18.8
18.8
27.2
27.2
27.2
27.2
40
40
40
60
60
60
60
(μA)
30
44
44
44
94
136
136
136
136
200
200
300
300
300
300
0.88
1.88
2.72
4
6
13.2
13.2
18.8
27.2
27.2
40
40
40
60
60
60
88
88
132
132
132
188
188
188
272
272
272
272
400
400
400
600
600
600
600
(μA)
60
88
88
88
188
272
272
272
272
400
400
600
600
600
600
1.76
3.76
5.44
8
12
26.4
26.4
37.6
54.4
54.4
80
80
80
120
120
120
176
176
264
264
264
376
376
376
544
544
544
544
800
800
800
1200
1200
1200
1200
(%)
10
16
16
8
8
16
16
10
10
14
14
60
20
20
20
6
6
6
6
6
6
6
8
6
6
30
8
8
10
6
6
8
8
8
8
8
12
12
12
14
14
10
10
14
16
16
30
30
30
30
(%)
12
19
19
10
10
19
19
12
12
17
17
90
24
24
24
9
9
9
9
9
9
9
10
9
9
36
10
10
12
9
9
10
10
10
10
10
14
14
14
17
17
12
12
17
19
18
36
36
36
36
25ºC
Ripple
Current
A
(100kHz)
0.753
0.652
0.753
1.826
2.070
1.732
2.070
1.817
2.171
2.031
2.345
1.225
1.817
2.500
2.887
0.097
0.097
0.124
0.146
0.156
0.158
0.224
0.387
0.262
0.369
0.231
0.230
0.652
0.583
1.173
1.254
0.408
1.936
1.049
1.826
2.070
1.225
1.826
2.171
1.581
1.826
1.658
2.031
1.658
2.673
3.162
1.483
1.817
1.826
2.236
Typical RMS Ripple Data by Rating
85ºC
125ºC
25ºC
85ºC
Ripple
Ripple
Ripple
Ripple
Current
Current
Voltage
Voltage
A
A
V
V
(100kHz) (100kHz) (100kHz) (100kHz)
0.677
0.587
0.677
1.643
1.863
1.559
1.863
1.635
1.954
1.828
2.111
1.102
1.635
2.250
2.598
0.087
0.087
0.112
0.131
0.140
0.142
0.201
0.349
0.236
0.332
0.208
0.207
0.587
0.525
1.055
1.128
0.367
1.743
0.944
1.643
1.863
1.102
1.643
1.954
1.423
1.643
1.492
1.828
1.492
2.405
2.846
1.335
1.635
1.643
2.012
0.301
0.261
0.301
0.730
0.828
0.693
0.828
0.727
0.868
0.812
0.938
0.490
0.727
1.000
1.155
0.039
0.039
0.050
0.058
0.062
0.063
0.089
0.155
0.105
0.148
0.093
0.092
0.261
0.233
0.469
0.501
0.163
0.775
0.420
0.730
0.828
0.490
0.730
0.868
0.632
0.730
0.663
0.812
0.663
1.069
1.265
0.593
0.727
0.730
0.894
0.113
0.130
0.113
0.082
0.072
0.087
0.072
0.091
0.076
0.081
0.070
0.122
0.091
0.100
0.087
0.775
0.775
0.684
0.583
0.545
0.474
0.492
0.194
0.420
0.406
0.324
0.369
0.130
0.146
0.094
0.088
0.367
0.077
0.105
0.082
0.072
0.122
0.082
0.076
0.095
0.082
0.099
0.081
0.099
0.094
0.079
0.111
0.091
0.137
0.112
0.102
0.117
0.102
0.074
0.065
0.078
0.065
0.082
0.068
0.073
0.063
0.110
0.082
0.090
0.078
0.697
0.697
0.615
0.525
0.491
0.427
0.443
0.174
0.378
0.366
0.292
0.332
0.117
0.131
0.084
0.079
0.331
0.070
0.094
0.074
0.065
0.110
0.074
0.068
0.085
0.074
0.090
0.073
0.090
0.084
0.071
0.100
0.082
0.123
0.101
125ºC
Ripple
Voltage
V
(100kHz)
0.045
0.052
0.045
0.033
0.029
0.035
0.029
0.036
0.030
0.032
0.028
0.049
0.036
0.040
0.035
0.310
0.310
0.273
0.233
0.218
0.190
0.197
0.077
0.168
0.162
0.130
0.148
0.052
0.058
0.038
0.035
0.147
0.031
0.042
0.033
0.029
0.049
0.033
0.030
0.038
0.033
0.040
0.032
0.040
0.037
0.032
0.044
0.036
0.055
0.045
All technical data relates to an ambient temperature of +25°C. Capacitance and DF are measured at 120Hz, 0.5V RMS with a maximum DC bias of 2.2 volts. DCL is measured at rated voltage after 5 minutes.
NOTE: KYOCERA AVX reserves the right to supply a higher voltage rating or tighter tolerance part in the same case size, to the same reliability standards.
46
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or available
online at www.kyocera-avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
041520
–
high reliability tantalum capacitors
–
TBJ SERIES
COTS-Plus
RATING & PART
NUMBER REFERENCE
COTS-Plus P/N
TBJA155*006C#@0^++
TBJA225*006C#@0^++
TBJA335*006C#@0^++
TBJB475*006C#@0^++
TBJA685*006C#@0^++
TBJA685*006L#@0^++
TBJB685*006C#@0^++
TBJA106*006C#@0^++
TBJA106*006L#@0^++
TBJB106*006C#@0^++
TBJA156*006C#@0^++
TBJA156*006L#@0^++
TBJB156*006C#@0^++
TBJC156*006C#@0^++
TBJA226*006C#@0^++
TBJA226*006L#@0^++
TBJB226*006C#@0^++
TBJB226*006L#@0^++
TBJC226*006C#@0^++
TBJA336*006L#@0^++
TBJB336*006C#@0^++
TBJB336*006L#@0^++
TBJA476*006L#@0^++
TBJB476*006C#@0^++
TBJB476*006L#@0^++
TBJC476*006C#@0^++
TBJC476*006L#@0^++
TBJD476*006C#@0^++
TBJB686*006C#@0^++
TBJB686*006L#@0^++
TBJC686*006C#@0^++
TBJC686*006L#@0^++
TBJD686*006C#@0^++
TBJB107*006C#@0^++
TBJB107*006L#@0^++
TBJC107*006C#@0^++
TBJC107*006L#@0^++
TBJD107*006C#@0^++
TBJC157*006C#@0^++
TBJC157*006L#@0^++
TBJD157*006C#@0^++
TBJD157*006L#@0^++
TBJC227*006C#@0^++
TBJC227*006L#@0^++
TBJD227*006C#@0^++
TBJD227*006L#@0^++
TBJE227*006L#@0^++
TBJD337*006C#@0^++
TBJD337*006L#@0^++
TBJE337*006C#@0^++
TBJE337*006L#@0^++
Cap
@
120Hz
μF
@
25ºC
1.5
2.2
3.3
4.7
6.8
6.8
6.8
10
10
10
15
15
15
15
22
22
22
22
22
33
33
33
47
47
47
47
47
47
68
68
68
68
68
100
100
100
100
100
150
150
150
150
220
220
220
220
220
330
330
330
330
DC Rated
Voltage
V
@
+85ºC
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
Parametric Specifications by Rating per MIL-PRF-55365/4
DCL max
DF Max
ESR
+(85/125)
@
100kHz
+25ºC
+85ºC
+125ºC
+25ºC
ºC
Ohms
@
+25ºC
8
8
8
5.5
5
1.8
4.5
4
1.5
3.5
3.5
1.5
3.5
3
3
0.5
2.5
0.375
2.2
0.6
2.2
0.6
0.8
0.35
0.25
1.6
0.3
1.1
1.8
0.25
1.6
0.15
0.9
0.4
0.25
0.9
0.15
0.9
0.09
0.05
0.9
0.05
1.2
0.07
0.9
0.1
0.1
0.05
0.045
0.9
0.1
-55ºC
(%)
9
9
9
9
10
10
9
10
10
9
10
10
10
9
10
10
10
10
9
12
10
10
14
10
10
10
10
9
12
10
10
10
9
14
14
10
10
10
10
10
10
10
14
12
12
12
12
12
12
12
12
Power
Dissipation
W
0.075
0.075
0.075
0.085
0.075
0.075
0.085
0.075
0.075
0.085
0.075
0.075
0.085
0.110
0.075
0.075
0.085
0.085
0.110
0.075
0.085
0.085
0.075
0.085
0.085
0.110
0.110
0.150
0.085
0.085
0.110
0.110
0.150
0.085
0.085
0.110
0.110
0.150
0.110
0.110
0.150
0.150
0.110
0.110
0.150
0.150
0.165
0.150
0.150
0.165
0.165
Case
A
A
A
B
A
A
B
A
A
B
A
A
B
C
A
A
B
B
C
A
B
B
A
B
B
C
C
D
B
B
C
C
D
B
B
C
C
D
C
C
D
D
C
C
D
D
E
D
D
E
E
(μA)
0.09
0.132
0.198
0.282
0.408
0.408
0.408
0.6
0.6
0.6
0.9
0.9
0.225
0.9
1.32
1.32
1.32
1.32
1.32
1.98
1.98
1.98
2.82
2.82
2.82
2.82
2.82
2.82
4.08
4.08
4.08
4.08
4.08
6
6
6
6
6
9
9
9
9
13.2
13.2
13.2
13.2
13.2
19.8
19.8
19.8
19.8
(μA)
0.9
1.32
1.98
2.82
4.08
4.08
4.08
6
6
6
9
9
2.25
9
13.2
13.2
13.2
13.2
13.2
19.8
19.8
19.8
28.2
28.2
28.2
28.2
28.2
28.2
40.8
40.8
40.8
40.8
40.8
60
60
60
60
60
90
90
90
90
132
132
132
132
132
198
198
198
198
(μA)
1.08
1.584
2.376
3.384
8.16
8.16
4.896
12
12
7.2
18
18
4.5
10.8
26.4
26.4
26.4
26.4
15.84
39.6
39.6
39.6
56.4
56.4
56.4
56.4
56.4
33.84
81.6
81.6
81.6
81.6
48.96
120
120
120
120
120
180
180
180
180
264
264
264
264
264
396
396
396
396
(%)
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
8
6
6
10
6
6
6
6
6
8
8
6
6
6
10
10
6
6
6
6
6
6
6
10
8
8
8
8
8
8
8
8
(%)
9
9
9
9
9
9
9
9
9
9
9
9
9
6
6
9
9
9
9
10
9
9
12
9
9
9
9
6
10
9
9
9
9
12
12
9
9
9
9
9
9
9
12
10
10
10
10
10
10
10
10
25ºC
Ripple
Current
A
(100kHz)
0.097
0.097
0.097
0.124
0.122
0.204
0.137
0.137
0.224
0.156
0.146
0.224
0.156
0.191
0.158
0.387
0.184
0.476
0.224
0.354
0.197
0.376
0.306
0.493
0.583
0.262
0.606
0.369
0.217
0.583
0.262
0.856
0.408
0.461
0.583
0.350
0.856
0.408
1.106
1.483
0.408
1.732
0.303
1.254
0.408
1.225
1.285
1.732
1.826
0.428
1.285
Typical RMS Ripple Data by Rating
85ºC
125ºC
25ºC
85ºC
Ripple
Ripple
Ripple
Ripple
Current
Current
Voltage
Voltage
A
A
V
V
(100kHz) (100kHz) (100kHz) (100kHz)
0.087
0.087
0.087
0.112
0.110
0.184
0.124
0.123
0.201
0.140
0.132
0.201
0.140
0.172
0.142
0.349
0.166
0.428
0.201
0.318
0.177
0.339
0.276
0.444
0.525
0.236
0.545
0.332
0.196
0.525
0.236
0.771
0.367
0.415
0.525
0.315
0.771
0.367
0.995
1.335
0.367
1.559
0.272
1.128
0.367
1.102
1.156
1.559
1.643
0.385
1.156
0.039
0.039
0.039
0.050
0.049
0.082
0.055
0.055
0.089
0.062
0.059
0.089
0.062
0.077
0.063
0.155
0.074
0.190
0.089
0.141
0.079
0.151
0.122
0.197
0.233
0.105
0.242
0.148
0.087
0.233
0.105
0.343
0.163
0.184
0.233
0.140
0.343
0.163
0.442
0.593
0.163
0.693
0.121
0.501
0.163
0.490
0.514
0.693
0.730
0.171
0.514
0.775
0.775
0.775
0.684
0.612
0.367
0.618
0.548
0.335
0.545
0.512
0.335
0.545
0.574
0.474
0.194
0.461
0.179
0.492
0.212
0.432
0.226
0.245
0.172
0.146
0.420
0.182
0.406
0.391
0.146
0.420
0.128
0.367
0.184
0.146
0.315
0.128
0.367
0.099
0.074
0.367
0.087
0.363
0.088
0.367
0.122
0.128
0.087
0.082
0.385
0.128
0.697
0.697
0.697
0.615
0.551
0.331
0.557
0.493
0.302
0.491
0.461
0.302
0.491
0.517
0.427
0.174
0.415
0.161
0.443
0.191
0.389
0.203
0.220
0.155
0.131
0.378
0.163
0.366
0.352
0.131
0.378
0.116
0.331
0.166
0.131
0.283
0.116
0.331
0.090
0.067
0.331
0.078
0.327
0.079
0.331
0.110
0.116
0.078
0.074
0.347
0.116
125ºC
Ripple
Voltage
V
(100kHz)
0.310
0.310
0.310
0.273
0.245
0.147
0.247
0.219
0.134
0.218
0.205
0.134
0.218
0.230
0.190
0.077
0.184
0.071
0.197
0.085
0.173
0.090
0.098
0.069
0.058
0.168
0.073
0.162
0.156
0.058
0.168
0.051
0.147
0.074
0.058
0.126
0.051
0.147
0.040
0.030
0.147
0.035
0.145
0.035
0.147
0.049
0.051
0.035
0.033
0.154
0.051
All technical data relates to an ambient temperature of +25°C. Capacitance and DF are measured at 120Hz, 0.5V RMS with a maximum DC bias of 2.2 volts. DCL is measured at rated voltage after 5 minutes.
NOTE: KYOCERA AVX reserves the right to supply a higher voltage rating or tighter tolerance part in the same case size, to the same reliability standards.
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or available
online at www.kyocera-avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
012819
47
–
high reliability tantalum capacitors
–
TBJ SERIES
COTS-Plus
RATING & PART
NUMBER REFERENCE
COTS-Plus P/N
TBJV337*006L#@0^++
TBJD477*006C#@0^++
TBJD477*006L#@0^++
TBJE477*006C#@0^++
TBJE477*006L#@0^++
TBJV477*006C#@0^++
TBJV477*006L#@0^++
TBJE687*006C#@0^++
TBJE687*006L#@0^++
TBJV687*006C#@0^++
TBJV687*006L#@0^++
TBJV108*006C#@0^++
TBJV108*006L#@0^++
TBJA105*010C#@0^++
TBJA155*010C#@0^++
TBJA225*010C#@0^++
TBJA225*010L#@0^++
TBJB335*010C#@0^++
TBJA475*010C#@0^++
TBJA475*010L#@0^++
TBJB475*010C#@0^++
TBJA685*010C#@0^++
TBJA685*010L#@0^++
TBJB685*010C#@0^++
TBJA106*010C#@0^++
TBJA106*010L#@0^++
TBJB106*010C#@0^++
TBJA156*010C#@0^++
TBJA156*010L#@0^++
TBJB156*010C#@0^++
TBJB156*010L#@0^++
TBJC156*010C#@0^++
TBJB226*010C#@0^++
TBJB226*010L#@0^++
TBJC226*010C#@0^++
TBJC226*010L#@0^++
TBJA336*010C#@0^++
TBJA336*010L#@0^++
TBJB336*010C#@0^++
TBJB336*010L#@0^++
TBJC336*010C#@0^++
TBJC336*010L#@0^++
TBJD336*010C#@0^++
TBJB476*010C#@0^++
TBJB476*010L#@0^++
TBJC476*010C#@0^++
TBJC476*010L#@0^++
TBJD476*010C#@0^++
TBJD476*010L#@0^++
TBJB686*010L#@0^++
TBJC686*010C#@0^++
Cap
@
120Hz
μF
@
25ºC
330
470
470
470
470
470
470
680
680
680
680
1000
1000
1
1.5
2.2
2.2
3.3
4.7
4.7
4.7
6.8
6.8
6.8
10
10
10
15
15
15
15
15
22
22
22
22
33
33
33
33
33
33
33
47
47
47
47
47
47
68
68
DC Rated
Voltage
V
@
+85ºC
6
6
6
6
6
6
6
6
6
6
6
6
6
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
Parametric Specifications by Rating per MIL-PRF-55365/4
DCL max
DF Max
ESR
+(85/125)
@
100kHz
+25ºC
+85ºC
+125ºC
+25ºC
ºC
Ohms
@
+25ºC
0.1
0.06
0.045
0.9
0.05
0.1
0.055
0.06
0.045
0.04
0.035
0.05
0.04
10
8
8
1.8
5.5
5
1.4
4.5
4
1.8
3.5
3
1.8
2.5
3.2
1
2.8
0.45
2.5
2.4
0.7
1
0.3
1.7
0.7
1.8
0.25
1.6
0.15
1.1
0.35
0.25
1.2
0.2
0.9
0.1
0.6
1.2
-55ºC
(%)
12
16
16
14
14
12
14
14
14
14
20
21
21
6
9
9
10
9
10
10
9
10
10
9
10
10
10
10
10
10
10
9
10
10
10
10
12
12
10
10
10
10
9
12
12
10
10
9
10
12
12
Power
Dissipation
W
0.250
0.150
0.150
0.165
0.165
0.250
0.250
0.165
0.165
0.250
0.250
0.250
0.250
0.075
0.075
0.075
0.075
0.085
0.075
0.075
0.085
0.075
0.075
0.085
0.075
0.075
0.085
0.075
0.075
0.085
0.085
0.110
0.085
0.085
0.110
0.110
0.075
0.075
0.085
0.085
0.110
0.110
0.150
0.085
0.085
0.110
0.110
0.150
0.150
0.085
0.110
Case
V
D
D
E
E
V
V
E
E
V
V
V
V
A
A
A
A
B
A
A
B
A
A
B
A
A
B
A
A
B
B
C
B
B
C
C
A
A
B
B
C
C
D
B
B
C
C
D
D
B
C
(μA)
19.8
28.2
28.2
28.2
28.2
28.2
28.2
40.8
40.8
40.8
40.8
60
60
0.1
0.15
0.22
0.22
0.33
0.47
0.47
0.47
0.68
0.68
0.68
1
1
1
1.5
1.5
1.5
1.5
1.5
2.2
2.2
2.2
2.2
3.3
3.3
3.3
3.3
3.3
3.3
3.3
4.7
4.7
4.7
4.7
4.7
4.7
6.8
6.8
(μA)
198
282
282
282
282
282
282
408
408
408
408
600
600
1
1.5
2.2
2.2
3.3
4.7
4.7
4.7
6.8
6.8
6.8
10
10
10
15
15
15
15
15
22
22
22
22
33
33
33
33
33
33
33
47
47
47
47
47
47
68
68
(μA)
396
564
564
564
564
564
564
816
816
816
816
1200
1200
1.2
1.8
2.64
4.4
3.96
9.4
9.4
5.64
13.6
13.6
8.16
20
20
20
30
30
30
30
18
44
44
44
44
66
66
66
66
66
66
39.6
94
94
94
94
56.4
94
136
136
(%)
8
12
12
10
10
10
10
10
10
10
14
16
16
4
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
8
8
6
6
6
6
6
8
8
6
6
6
6
8
6
(%)
10
14
14
12
12
12
12
12
12
12
17
19
19
6
6
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
6
9
9
9
9
10
10
9
8
9
9
9
10
10
9
9
9
9
10
10
25ºC
Ripple
Current
A
(100kHz)
1.581
1.581
1.826
0.428
1.817
1.581
2.132
1.658
1.915
2.500
2.673
2.236
2.500
0.087
0.097
0.097
0.204
0.124
0.122
0.231
0.137
0.137
0.204
0.156
0.158
0.204
0.184
0.153
0.274
0.174
0.435
0.210
0.188
0.348
0.332
0.606
0.210
0.327
0.217
0.583
0.262
0.856
0.369
0.493
0.583
0.303
0.742
0.408
1.225
0.376
0.303
Typical RMS Ripple Data by Rating
85ºC
125ºC
25ºC
85ºC
Ripple
Ripple
Ripple
Ripple
Current
Current
Voltage
Voltage
A
A
V
V
(100kHz) (100kHz) (100kHz) (100kHz)
1.423
1.423
1.643
0.385
1.635
1.423
1.919
1.492
1.723
2.250
2.405
2.012
2.250
0.078
0.087
0.087
0.184
0.112
0.110
0.208
0.124
0.123
0.184
0.140
0.142
0.184
0.166
0.138
0.246
0.157
0.391
0.189
0.169
0.314
0.298
0.545
0.189
0.295
0.196
0.525
0.236
0.771
0.332
0.444
0.525
0.272
0.667
0.367
1.102
0.339
0.272
0.632
0.632
0.730
0.171
0.727
0.632
0.853
0.663
0.766
1.000
1.069
0.894
1.000
0.035
0.039
0.039
0.082
0.050
0.049
0.093
0.055
0.055
0.082
0.062
0.063
0.082
0.074
0.061
0.110
0.070
0.174
0.084
0.075
0.139
0.133
0.242
0.084
0.131
0.087
0.233
0.105
0.343
0.148
0.197
0.233
0.121
0.297
0.163
0.490
0.151
0.121
0.158
0.095
0.082
0.385
0.091
0.158
0.117
0.099
0.086
0.100
0.094
0.112
0.100
0.866
0.775
0.775
0.367
0.684
0.612
0.324
0.618
0.548
0.367
0.545
0.474
0.367
0.461
0.490
0.274
0.488
0.196
0.524
0.452
0.244
0.332
0.182
0.357
0.229
0.391
0.146
0.420
0.128
0.406
0.172
0.146
0.363
0.148
0.367
0.122
0.226
0.363
0.142
0.085
0.074
0.347
0.082
0.142
0.106
0.090
0.078
0.090
0.084
0.101
0.090
0.779
0.697
0.697
0.331
0.615
0.551
0.292
0.557
0.493
0.331
0.491
0.427
0.331
0.415
0.441
0.246
0.439
0.176
0.472
0.406
0.220
0.298
0.163
0.321
0.206
0.352
0.131
0.378
0.116
0.366
0.155
0.131
0.327
0.133
0.331
0.110
0.203
0.327
125ºC
Ripple
Voltage
V
(100kHz)
0.063
0.038
0.033
0.154
0.036
0.063
0.047
0.040
0.034
0.040
0.037
0.045
0.040
0.346
0.310
0.310
0.147
0.273
0.245
0.130
0.247
0.219
0.147
0.218
0.190
0.147
0.184
0.196
0.110
0.195
0.078
0.210
0.181
0.098
0.133
0.073
0.143
0.092
0.156
0.058
0.168
0.051
0.162
0.069
0.058
0.145
0.059
0.147
0.049
0.090
0.145
All technical data relates to an ambient temperature of +25°C. Capacitance and DF are measured at 120Hz, 0.5V RMS with a maximum DC bias of 2.2 volts. DCL is measured at rated voltage after 5 minutes.
NOTE: KYOCERA AVX reserves the right to supply a higher voltage rating or tighter tolerance part in the same case size, to the same reliability standards.
48
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or available
online at www.kyocera-avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
Live broadcast time: March 19 (Thursday) 10:00-11:30 amLive broadcast content: Introduce how to develop the ST sensor development platform SensorTile.box, the bone vibration sensor LIS25BA that improv...
Work location: Nanjing Work time: Full-time Salary: Negotiable Basic requirements: 1. Familiar with MCU application design. 2. Familiar with circuit design and layout. 3. Have a good theoretical found...
The upper facview interface of my company and Lishi is running normally. When switching the operation interface, sometimes all the running devices turn red and report a trip stop message. It takes abo...
With the rapid development of science and technology, especially the widespread application of digital technology and various ultra-large-scale integrated circuits, electronic equipment, especially...[Details]
The Mobile Industry Processor Interface (MIPI) Alliance is an organization responsible for promoting the standardization of software and hardware in mobile devices. It has released the D-PHY specif...[Details]
1 Introduction
As an emerging microfabrication technology, micro-electromechanical system (MEMS) technology has begun to be applied in various fields. It can integrate functions such as inform...[Details]
The data collector of the automatic weather station is generally designed based on a single-chip microcomputer or a PC/104 bus controller. It has the characteristics of good compatibility with PC, low...[Details]
1 Introduction
Ultrasonic waves have strong directivity, slow energy consumption, and can propagate over long distances in a medium, so they are used for distance measurement. Ultrasonic detec...[Details]
Flooded Batteries
This battery developed in Germany can be used to power flashlights, strobe lights and toys as long as it is filled with water. This battery can be stored for 50 years and can...[Details]
Introduction
Liquid crystal, as a display device, is widely used in low-power products such as instruments, meters, and electronic equipment with its unique advantages. In the past, the displ...[Details]
introduction
MAX6636 is a multi-channel precision temperature monitor that can not only monitor local temperature, but also connect up to 6 diodes externally. Each channel has a programmable...[Details]
Introduction
Nowadays, people pay more and more attention to the security alarm system, and people have higher and higher requirements for the functions and performance of the alarm. This paper prop...[Details]
The above is to use MB1404 as a stereo composite signal transmitter. You can use the internal high-frequency amplifier and oscillator or not! According to my experience, I still recommend beginners...[Details]
1 Introduction
With the rapid economic development, my country's electricity demand has been growing at a rate of more than 20% per year. According to the current economic development trend an...[Details]
Cars equipped with xenon headlights are already common on the road. Whether they are standard equipment on high-end cars or embellishments on modified cars, xenon lamps are gradually becoming a sym...[Details]
Power supply is often the most easily overlooked link in the circuit design process. In fact, as an excellent design, power supply design should be very important, which greatly affects the perfor...[Details]
DigRF
is
poised to replace the two main forms of data communication paths between RF and baseband semiconductor devices:
analog
signaling, and proprietary digital signaling (paralle...[Details]