dimension applies to the termination width for A dimensional area only.
CAPACITANCE AND RATED VOLTAGE, V
R
(EIA VOLTAGE CODE) RANGE
LETTER DENOTES CASE SIZE (ESR LIMITS IN PARENTHESES)
Capacitance
μF
Code
0.15
154
0.22
224
0.47
474
0.68
684
1.0
105
1.5
155
2.2
225
3.3
335
4.7
6.8
10
15
22
33
47
68
100
150
220
330
470
1000
475
685
106
156
226
336
476
686
107
157
227
337
477
108
E(200)
A(1500)
A(1400)
B(900)
A(3000)
4V (G)
6V (J)
10V (A)
Rated Voltage DC (V
R
) to 85ºC
16V (C)
20V (D)
25V (E)
35V (V)
50V (T)
A(15000)
A(18000)
A(9500)/B(9500)
A(7900)
A(6600)/B(7000)
C(2000)/D(1500)
D(1200)
D(800)
D(300)
E(300)
D(300,600)
E(400)
A(8000)
A(6000)
A(5000)
A(4000)
A(3500)
A(3000)/B(600)
B(600)
C(300)
B(500)/C(200)
D(175)
C(75,150)
D(125)/E(125)
D(50,125)
E(100)
E(50,150)
E(50,200)/V(40)
A(5000)
A(4000)
A(1800,3000)
A(1000,3200)
B(600)
B(500,700)
C(300)
A(700)/B(425,650)
C (500)
C(200,350)
D(200)
C(80,300)
D(150)/E(150)
C(75,200)
D(50,100)/E(100)
D(50,100)/E(100)
D(50,150)
E(50,100)
D(50,150)
E(50,100)/V(40)
E(50,200)/V(40)
A(5500)
A(3500,5000)
A(2000)
A(1500/B(1200)
A(3000)/B(900)
B(500,800)
B(600)/C(175,375)
B(500)
C(100,300)
D(250)
C(110,350)
D(80,150)
D(150)
D(50,125)
E(100)
D(60,150)/V(45)
V(50)
A(6500)
A(3000)
A(1800,4000)
B(1000)
B(1000)
B(500,1000)
C(700)
B(500)/C(450)
D(275)
B(600)/C(400)
D(275)
C(300)
D(100, 200)
D(100,200)
E(150)
D(70,200)
E(125,200)
V(60)
A(10000)
A(8000)
A(3000,7500)
A(7000)/B(2000)
B(2000)
A(3100)
B(700,1500)
B(700,2800)
C(700)
C(300,500)
D(275)/E(200)
C(275,400)
D(100,200)/E(225)
D(90,300)
E(90,175)
D(175,250)
V(95)
A(12000)
A(8000)
A(7500)
A(7500)/B(5200)
B(2000)
B(1000)
B(1500)
C(600)/D(450)
C(350)/D(400)
E(300)
C(1600)/D(125,300)
E(250)
C(450)/D(100,300)
E(250)
D(125,400)
E(125,300)
D(200,300)
E(300)
E(250)/V(200)
NOTE: EIA standards for Low ESR solid tantalum capacitors allow
an ESR movement of 1.25 times initial limit post mounting.
34
n
SEPTEMBER 2013
TBJ Series
COTS-Plus – DSCC Dwgs 07016 & 95158
HOW TO ORDER
COTS-PLUS & DSCC DWG (95158 & 07016):
TBJ D
Type
Case
Size
686
*
006
C
#
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
Z = Non-ER
0
^
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
Capacitance Capacitance
Voltage
Standard or Packaging Inspection Level
Code
Tolerance
Code
Low ESR
S = Std.
B = Bulk
pF code:
M = ±20% 004 = 4Vdc
Range
Conformance
R = 7" T&R
1st two digits
K = ±10% 006 = 6Vdc C = Std ESR S = 13" T&R L = Group A
represent
J = ±5%
010 = 10Vdc L = Low ESR W = Waffle
D = DSCC DWG
significant
016 = 16Vdc
figures 3rd
020 = 20Vdc
See page 6
digit represents
025 = 25Vdc
for additional
multiplier
035 = 35Vdc
(number of
packaging
zeros to follow)
050 = 50Vdc
options.
Qualification Termination Finish
Level
H = Solder Plated
0 = N/A
0 = Fused Solder
Plated
8 = Hot Solder
Dipped
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
Not RoHS Compliant
LEAD-FREE COMPATI-
BLE
COMPONENT
DSCC DWG P/N CROSS REFERENCE:
07016
DSCC DWG
07016
For RoHS compliant products,
please select correct termination style.
-001
Dash
Number
See Rating
Tables
K
Capacitance
Tolerance
K = ±10%
M = ±20%
B
Reliability
Grade
B = B Weibull
C = C Weibull
D = D Weibull
C
Termination Finish
B = Gold Plated (10 microinch minimum)
H = Solder Plated (50 microinch minimum)
C = Hot Solder Dip (60 microinch minimum)
A
Surge Test
Option
A = 10 cycles, +25°C
B = 10 cycles,
-55°C & +85°C
C = 10 cycles,
-55°C & +85°C
before Weibull
Z = None required
Per MIL-PRF-55365
Not RoHS Compliant
95158
DSCC DWG
95158
-01
Dash
Number
See Rating
Tables
K
Capacitance
Tolerance
K = ±10%
M = ±20%
H
Termination Finish
B = Gold Plated (10 microinch minimum)
H = Solder Plated (100 microinch minimum)
TECHNICAL SPECIFICATIONS
Technical Data:
Capacitance Range:
Capacitance Tolerance:
Rated Voltage: (V
R
)
Category Voltage: (V
C
)
Surge Voltage: (V
S
)
Temperature Range:
Unless otherwise specified, all technical
0.15 μF to 1000 μF
±5%; ±10%; ±20%
4
6
10
16
2.7
4
7
10
5.2
8
13
20
3.4
5
8
12
-55°C to +125°C
data relate to an ambient temperature of 25°C
85°C:
125°C:
85°C:
125°C:
20
13
26
16
25
17
32
20
35
23
46
28
50
33
65
40
SEPTEMBER 2013
n
35
TBJ Series
COTS-Plus – DSCC Dwgs 07016 & 95158
RATING & PART NUMBER REFERENCE
DSCC P/N
07016 001
07016 002
07016 003
07016 004
07016 005
07016 006
07016 007
07016 008
07016 009
07016 010
07016 011
07016 012
07016 013
07016 014
07016 015
07016 016
95158 01
07016 017
07016 018
07016 019
95158 02
07016 020
95158 25
95158 03
07016 021
07016 022
07016 023
07016 024
07016 025
07016 026
07016 027
07016 028
07016 029
07016 030
07016 031
07016 032
07016 033
07016 034
07016 035
07016 036
07016 037
07016 038
07016 039
07016 040
07016 041
95158 -04
07016 042
07016 043
07016 044
95158 05
07016 045
07016 046
95158 06
07016 047
95158 07
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
*
* @
* @
* @
*
* @
*
*
* @
* @
M@
M@
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
*
* @
* @
* @
*
* @
* @
*
* @
*
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^
^+
^+
^+
^
^+
^
^
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^
^+
^+
^+
^
^+
^+
^
^+
^
AVX DSCC & COTS-Plus P/N
TBJ A 336
TBJ A 686
TBJ A 107
TBJ B 107
TBJ E 108
TBJ A 335
TBJ A 475
TBJ A 685
TBJ A 106
TBJ A 156
TBJ A 226
TBJ B 226
TBJ B 336
TBJ C 476
TBJ B 686
TBJ C 686
TBJ D 686
TBJ C 107
TBJ C 107
TBJ D 157
TBJ E 157
TBJ D 227
TBJ D 227
TBJ E 227
TBJ E 337
TBJ E 337
TBJ E 477
TBJ E 477
TBJ V 477
TBJ A 475
TBJ A 685
TBJ A 106
TBJ A 106
TBJ A 156
TBJ A 156
TBJ B 156
TBJ B 226
TBJ B 226
TBJ C 226
TBJ A 336
TBJ B 336
TBJ B 336
TBJ C 336
TBJ C 476
TBJ C 476
TBJ D 476
TBJ C 686
TBJ C 686
TBJ D 686
TBJ E 686
TBJ C 107
TBJ C 107
TBJ D 107
TBJ D 107
TBJ E 107
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
004 C
004 C
004 C
004 C
004 C
006 C
006 C
006 C
006 C
006 C
006 C
006 C
006 C
006 C
006 C
006 C
006 C
006 C
006 L
006 C
006 C
006 C
006 L
006 L
006 C
006 L
006 C
006 L
006 L
010 C
010 C
010 C
010 L
010 C
010 L
010 C
010 C
010 L
010 C
010 C
010 C
010 L
010 C
010 C
010 L
010 C
010 C
010 L
010 C
010 C
010 C
010 L
010 C
010 L
010 C
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
Case
A
A
A
B
E
A
A
A
A
A
A
B
B
C
B
C
D
C
C
D
E
D
D
E
E
E
E
E
V
A
A
A
A
A
A
B
B
B
C
A
B
B
C
C
C
D
C
C
D
E
C
C
D
D
E
Cap
@ 120Hz
μF
@ 25ºC
33
68
100
100
1,000
3.3
4.7
6.8
10
15
22
22
33
47
68
68
68
100
100
150
150
220
220
220
330
330
470
470
470
4.7
6.8
10
10
15
15
15
22
22
22
33
33
33
33
47
47
47
68
68
68
68
100
100
100
100
100
Parametric Specifications by Rating per DSCC 95158 or 07016 where applicable
DC Rated
ESR
DCL max
DF Max
Voltage @ 100kHz
+25ºC
+85ºC
+125ºC
+25ºC
+(85/125)ºC
-55ºC
V
mOhms
(μA)
(μA)
(μA)
(%)
(%)
(%)
@ +85ºC @ +25ºC
4
3000
1.4
14
17
6
9
9
4
1500
2.7
27
32
10
12
14
4
1400
4
40
48
30
36
42
4
900
4
40
48
8
10
12
4
200
40
400
480
60
90
90
6
8000
0.5
5
6
6
9
9
6
6000
0.5
5
6
6
9
10
6
5000
0.5
5
6
6
9
10
6
4000
0.6
10
11
6
9
10
6
3500
0.9
10
11
6
9
10
6
3000
1.4
14
17
6
9
10
6
600
1.4
14
17
6
9
10
6
600
2.1
21
25
6
9
10
6
300
3
30
36
6
9
10
6
500
4.3
43
51
8
10
12
6
200
4.3
43
51
6
9
10
6
175
3.3
19.8
33
4
6
6
6
150
6.3
63
76
6
9
10
6
75
6.3
63
76
6
9
10
6
125
9.5
95
113
6
9
10
6
125
7.2
43.2
72
6
8
8
6
125
13.2
132
166
8
10
12
6
100
13.2
132
165
8
10
12
6
100
13.2
132
165
8
12
12
6
150
19.8
198
249
8
10
12
6
50
19.8
198
249
8
10
12
6
200
29.6
296
355
10
12
14
6
50
29.6
296
355
10
12
14
6
40
29.6
296
355
10
12
12
10
5000
0.5
5
6
6
9
10
10
4000
0.7
7
8
6
9
10
10
3000
1
10
12
6
9
10
10
1800
1
10
12
6
9
10
10
3200
1.6
16
19
6
9
10
10
1000
1.6
16
19
6
9
10
10
600
1.6
16
19
6
9
10
10
700
2.2
22
26
6
9
10
10
500
2.2
22
26
6
9
10
10
300
2.2
22
26
6
9
10
10
700
3.3
33
40
8
10
12
10
650
3.3
33
40
6
9
10
10
425
3.3
33
40
6
9
10
10
500
3.3
33
40
6
9
10
10
350
4.7
47
56
6
9
10
10
200
4.7
47
56
6
9
10
10
200
3.8
22.8
38
4
6
6
10
300
6.8
68
82
8
10
12
10
80
6.8
68
82
8
10
12
10
150
6.8
68
82
6
9
10
10
150
5.4
32.4
54
4
6
6
10
200
10
100
120
8
10
12
10
75
10
100
120
8
10
12
10
100
10
100
125
6
9
10
10
50
10
100
120
6
9
10
10
100
8
48
80
6
8
8
25ºC
Dissipation
Ripple
A
W
(100kHz)
0.075
0.16
0.075
0.22
0.075
0.23
0.085
0.31
0.165
0.91
0.075
0.10
0.075
0.11
0.075
0.12
0.075
0.14
0.075
0.15
0.075
0.16
0.085
0.38
0.085
0.38
0.110
0.61
0.085
0.41
0.110
0.74
0.150
0.93
0.110
0.86
0.110
1.21
0.150
1.10
0.165
1.15
0.150
1.10
0.150
1.22
0.165
1.28
0.165
1.05
0.165
1.82
0.165
0.91
0.165
1.82
0.250
2.50
0.075
0.12
0.075
0.14
0.075
0.16
0.075
0.20
0.075
0.15
0.075
0.27
0.085
0.38
0.085
0.35
0.085
0.41
0.110
0.61
0.075
0.33
0.085
0.36
0.085
0.45
0.110
0.47
0.110
0.56
0.110
0.74
0.150
0.87
0.110
0.61
0.110
1.17
0.150
1.00
0.165
1.05
0.110
0.74
0.110
1.21
0.150
1.22
0.150
1.73
0.165
1.28
Power
Typical Ripple Data by Rating
85ºC
125ºC
25ºC
Ripple
Ripple
Ripple
A
A
V
(100kHz) (100kHz) (100kHz)
0.14
0.06
0.47
0.20
0.09
0.34
0.21
0.09
0.32
0.28
0.12
0.28
0.82
0.36
0.18
0.09
0.04
0.77
0.10
0.04
0.67
0.11
0.05
0.61
0.12
0.05
0.55
0.13
0.06
0.51
0.14
0.06
0.47
0.34
0.15
0.23
0.34
0.15
0.23
0.54
0.24
0.18
0.37
0.16
0.21
0.67
0.30
0.15
0.83
0.37
0.16
0.77
0.34
0.13
1.09
0.48
0.09
0.99
0.44
0.14
1.03
0.46
0.14
0.99
0.44
0.14
1.10
0.49
0.12
1.16
0.51
0.13
0.94
0.42
0.16
1.63
0.73
0.09
0.82
0.36
0.18
1.63
0.73
0.09
2.25
1.00
0.10
0.11
0.05
0.61
0.12
0.05
0.55
0.14
0.06
0.47
0.18
0.08
0.37
0.14
0.06
0.49
0.25
0.11
0.27
0.34
0.15
0.23
0.31
0.14
0.24
0.37
0.16
0.21
0.54
0.24
0.18
0.29
0.13
0.23
0.33
0.14
0.24
0.40
0.18
0.19
0.42
0.19
0.23
0.50
0.22
0.20
0.67
0.30
0.15
0.78
0.35
0.17
0.54
0.24
0.18
1.06
0.47
0.09
0.90
0.40
0.15
0.94
0.42
0.16
0.67
0.30
0.15
1.09
0.48
0.09
1.10
0.49
0.12
1.56
0.69
0.09
1.16
0.51
0.13
85ºC
Ripple
V
(100kHz)
0.43
0.30
0.29
0.25
0.16
0.70
0.60
0.55
0.49
0.46
0.43
0.20
0.20
0.16
0.19
0.13
0.15
0.12
0.08
0.12
0.13
0.12
0.11
0.12
0.14
0.08
0.16
0.08
0.09
0.55
0.49
0.43
0.33
0.44
0.25
0.20
0.22
0.19
0.16
0.21
0.21
0.17
0.21
0.18
0.13
0.16
0.16
0.08
0.14
0.14
0.13
0.08
0.11
0.08
0.12
125ºC
Ripple
V
(100kHz)
0.19
0.13
0.13
0.11
0.07
0.31
0.27
0.24
0.22
0.20
0.19
0.09
0.09
0.07
0.08
0.06
0.06
0.05
0.04
0.05
0.06
0.05
0.05
0.05
0.06
0.04
0.07
0.04
0.04
0.24
0.22
0.19
0.15
0.20
0.11
0.09
0.10
0.08
0.07
0.09
0.09
0.08
0.09
0.08
0.06
0.07
0.07
0.04
0.06
0.06
0.06
0.04
0.05
0.03
0.05
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: AVX reserves the right to supply a higher voltage rating or tighter tolerance part in the same case size, to the same reliability standards.
36
n
SEPTEMBER 2013
TBJ Series
COTS-Plus – DSCC Dwgs 07016 & 95158
RATING & PART NUMBER REFERENCE
DSCC P/N
95158 26
07016 048
95158 08
07016 049
07016 050
95158 28
07016 051
07016 052
07016 053
07016 054
07016 055
07016 056
07016 057
07016 058
07016 059
07016 060
07016 061
07016 062
07016 063
07016 064
07016 065
07016 066
07016 067
07016 068
07016 069
07016 070
07016 071
07016 072
07016 073
07016 074
07016 075
95158 09
07016 076
07016 077
07016 078
95158 10
07016 079
07016 080
07016 081
95158 11
07016 082
07016 083
07016 084
07016 085
07016 086
07016 087
07016 088
07016 089
07016 090
07016 091
07016 092
07016 093
07016 094
07016 095
07016 096
95158 12
*
*@
*
*@
M@
*
*@
M@
M@
*@
*@
*@
M@
M@
*@
*@
*@
*@
*@
*@
*@
*@
*@
* @
* @
* @
* @
* @
* @
* @
* @
*
* @
* @
* @
*
* @
* @
* @
*
M@
M@
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
*
^
^+
^
^+
^+
^
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^
^+
^+
^+
^
^+
^+
^+
^
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^
AVX DSCC & COTS-Plus P/N
TBJ D 157 * 010 C
TBJ D 157 * 010 L
TBJ E 157 * 010 C
TBJ D 227 * 010 C
TBJ D 227 * 010 L
TBJ E 227 * 010 C
TBJ E 227 * 010 L
TBJ D 337 M 010 C
TBJ D 337 M 010 L
TBJ E 337 * 010 C
TBJ E 337 * 010 L
TBJ V 337 * 010 L
TBJ E 477 M 010 C
TBJ E 477 M 010 L
TBJ V 477 * 010 L
TBJ A 225 * 016 C
TBJ A 335 * 016 C
TBJ A 335 * 016 L
TBJ A 475 * 016 C
TBJ A 685 * 016 C
TBJ B 685 * 016 C
TBJ A 106 * 016 C
TBJ B 106 * 016 L
TBJ B 156 * 016 C
TBJ B 156 * 016 L
TBJ B 226 * 016 C
TBJ C 226 * 016 C
TBJ C 226 * 016 L
TBJ B 336 * 016 C
TBJ C 336 * 016 C
TBJ C 336 * 016 L
TBJ D 336 * 016 C
TBJ C 476 * 016 C
TBJ C 476 * 016 L
TBJ D 476 * 016 L
TBJ D 476 * 016 C
TBJ D 686 * 016 C
TBJ D 107 * 016 C
TBJ D 107 * 016 L
TBJ E 107 * 016 C
TBJ D 157 M 016 C
TBJ D 157 M 016 L
TBJ V 157 * 016 L
TBJ V 227 * 016 L
TBJ A 155 * 020 C
TBJ A 225 * 020 C
TBJ A 475 * 020 C
TBJ A 475 * 020 L
TBJ B 475 * 020 C
TBJ B 685 * 020 C
TBJ B 106 * 020 C
TBJ B 106 * 020 L
TBJ C 106 * 020 C
TBJ B 156 * 020 C
TBJ C 156 * 020 C
TBJ D 156 * 020 C
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
Case
D
D
E
D
D
E
E
D
D
E
E
V
E
E
V
A
A
A
A
A
B
A
B
B
B
B
C
C
B
C
C
D
C
C
D
D
D
D
D
E
D
D
V
V
A
A
A
A
B
B
B
B
C
B
C
D
Cap
@ 120Hz
μF
@ 25ºC
150
150
150
220
220
220
220
330
330
330
330
330
470
470
470
2.2
3.3
3.3
4.7
6.8
6.8
10
10
15
15
22
22
22
22
33
33
33
47
47
47
47
68
100
100
100
150
150
150
220
1.5
2.2
4.7
4.7
4.7
6.8
10
10
10
15
15
15
Parametric Specifications by Rating per DSCC 95158 or 07016 where applicable
DC Rated
ESR
DCL max
DF Max
Voltage @ 100kHz
+25ºC
+85ºC
+125ºC
+25ºC
+(85/125)ºC
-55ºC
V
mOhms
(μA)
(μA)
(μA)
(%)
(%)
(%)
@ +85ºC @ +25ºC
10
100
15
150
187.5
8
10
12
10
50
15
150
180
8
10
12
10
100
15
150
187.5
8
12
12
10
150
22
220
264
8
10
12
10
50
15
150
180
8
10
12
10
100
15
150
187.5
8
10
12
10
50
22
220
264
8
10
12
10
150
33
330
396
8
10
12
10
50
33
330
396
8
10
12
10
100
33
330
396
8
10
12
10
50
33
330
396
8
10
12
10
40
33
330
396
8
10
12
10
200
47
470
564
10
12
14
10
50
47
470
564
10
12
14
10
40
47
470
564
10
12
14
16
5500
0.5
5
6
6
9
10
16
5000
0.5
5
6
6
9
10
16
3500
0.5
5
6
6
9
10
16
2000
0.8
8
10
6
9
10
16
1500
1.1
11
13
6
9
10
16
1200
1.1
11
13
6
9
10
16
3000
1.6
16
19
6
9
10
16
900
1.6
16
19
6
9
10
16
800
2.4
24
29
6
9
10
16
500
2.4
24
29
6
9
10
16
600
3.6
36
43
6
9
10
16
375
3.6
36
43
6
9
10
16
150
3.6
36
43
6
9
10
16
500
3.6
36
43
6
9
10
16
300
5.3
53
64
6
9
10
16
100
5.3
53
64
6
9
10
16
250
4.2
25.2
42
4
6
6
16
350
7.6
76
91
6
9
10
16
110
7.6
76
91
6
9
10
16
80
7.6
76
91
6
9
10
16
200
7.5
75
94
6
9
9
16
150
10.9
109
131
6
9
10
16
125
16
160
192
6
9
10
16
50
16
160
192
6
9
10
16
125
16
160
200
6
9
10
16
150
24
240
288
6
9
10
16
60
24
240
288
6
9
10
16
45
24
480
288
6
8
10
16
50
35.2
352
422
8
10
12
20
6500
0.5
5
6
6
8
10
20
3000
0.5
5
6
6
8
10
20
4000
1
10
12
6
8
10
20
1800
1
10
12
6
8
10
20
1000
2
20
24
6
8
10
20
1000
1.4
14
17
6
8
10
20
1000
0.7
7
8
6
8
10
20
500
0.7
7
8
6
8
10
20
700
1.4
14
17
6
8
10
20
500
3
30
36
6
8
10
20
450
3
30
36
6
8
10
20
275
2.4
14.4
24
4
6
6
25ºC
Dissipation
Ripple
A
W
(100kHz)
0.150
1.22
0.150
1.73
0.165
1.28
0.150
1.00
0.150
1.73
0.165
1.28
0.165
1.82
0.150
1.00
0.150
1.73
0.165
1.28
0.165
1.82
0.250
2.50
0.165
0.91
0.165
1.82
0.250
2.50
0.075
0.12
0.075
0.12
0.075
0.15
0.075
0.19
0.075
0.22
0.085
0.27
0.075
0.16
0.085
0.32
0.085
0.33
0.085
0.41
0.085
0.38
0.110
0.54
0.110
0.86
0.085
0.41
0.110
0.61
0.110
1.05
0.150
0.77
0.110
0.56
0.110
1.00
0.150
1.37
0.150
0.87
0.150
1.00
0.150
1.10
0.150
1.73
0.165
1.15
0.150
1.00
0.150
1.58
0.250
2.36
0.250
2.24
0.075
0.11
0.075
0.16
0.075
0.14
0.075
0.20
0.085
0.29
0.085
0.29
0.085
0.29
0.085
0.41
0.110
0.40
0.085
0.41
0.110
0.49
0.150
0.74
Power
Typical Ripple Data by Rating
85ºC
125ºC
25ºC
Ripple
Ripple
Ripple
A
A
V
(100kHz) (100kHz) (100kHz)
1.10
0.49
0.12
1.56
0.69
0.09
1.16
0.51
0.13
0.90
0.40
0.15
1.56
0.69
0.09
1.16
0.51
0.13
1.63
0.73
0.09
0.90
0.40
0.15
1.56
0.69
0.09
1.16
0.51
0.13
1.63
0.73
0.09
2.25
1.00
0.10
0.82
0.36
0.18
1.63
0.73
0.09
2.25
1.00
0.10
0.11
0.05
0.64
0.11
0.05
0.61
0.13
0.06
0.51
0.17
0.08
0.39
0.20
0.09
0.34
0.24
0.11
0.32
0.14
0.06
0.47
0.29
0.13
0.26
0.29
0.13
0.26
0.37
0.16
0.21
0.34
0.15
0.23
0.49
0.22
0.20
0.77
0.34
0.13
0.37
0.16
0.21
0.54
0.24
0.18
0.94
0.42
0.10
0.70
0.31
0.19
0.50
0.22
0.20
0.90
0.40
0.11
1.23
0.55
0.11
0.78
0.35
0.17
0.90
0.40
0.15
0.99
0.44
0.14
1.56
0.69
0.09
1.03
0.46
0.14
0.90
0.40
0.15
1.42
0.63
0.09
2.12
0.94
0.11
2.01
0.89
0.11
0.10
0.04
0.70
0.14
0.06
0.47
0.12
0.05
0.55
0.18
0.08
0.37
0.26
0.12
0.29
0.26
0.12
0.29
0.26
0.12
0.29
0.37
0.16
0.21
0.36
0.16
0.28
0.37
0.16
0.21
0.44
0.20
0.22
0.66
0.30
0.20
85ºC
Ripple
V
(100kHz)
0.11
0.08
0.12
0.14
0.08
0.12
0.08
0.14
0.08
0.12
0.08
0.09
0.16
0.08
0.09
0.58
0.55
0.46
0.35
0.30
0.29
0.43
0.23
0.23
0.19
0.20
0.18
0.12
0.19
0.16
0.09
0.17
0.18
0.10
0.10
0.16
0.14
0.12
0.08
0.13
0.14
0.09
0.10
0.10
0.63
0.43
0.49
0.33
0.26
0.26
0.26
0.19
0.25
0.19
0.20
0.18
125ºC
Ripple
V
(100kHz)
0.05
0.03
0.05
0.06
0.03
0.05
0.04
0.06
0.03
0.05
0.04
0.04
0.07
0.04
0.04
0.26
0.24
0.20
0.15
0.13
0.13
0.19
0.10
0.10
0.08
0.09
0.08
0.05
0.08
0.07
0.04
0.08
0.08
0.04
0.04
0.07
0.06
0.05
0.03
0.06
0.06
0.04
0.04
0.04
0.28
0.19
0.22
0.15
0.12
0.12
0.12
0.08
0.11
0.08
0.09
0.08
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: AVX reserves the right to supply a higher voltage rating or tighter tolerance part in the same case size, to the same reliability standards.
SEPTEMBER 2013
n
37
TBJ Series
COTS-Plus – DSCC Dwgs 07016 & 95158
RATING & PART NUMBER REFERENCE
DSCC P/N
07016 097
07016 098
95158 13
07016 099
07016 100
07016 101
07016 102
07016 103
95158 14
07016 104
07016 105
07016 106
95158 15
07016 107
07016 108
07016 109
07016 110
07016 111
07016 112
07016 113
07016 114
07016 115
07016 116
07016 117
07016 118
07016 119
07016 120
07016 121
07016 122
95158 16
95158 17
07016 123
07016 124
07016 125
07016 126
95158 18
07016 127
07016 128
95158 19
07016 129
07016 130
07016 131
07016 132
07016 133
07016 134
07016 135
07016 136
07016 137
07016 138
07016 139
07016 140
95158 29
07016 141
07016 142
07016 143
* @
* @
*
* @
* @
* @
* @
* @
*
* @
* @
* @
*
* @
M@
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
* @
*
*
* @
* @
* @
* @
*
* @
* @
*
* @
M@
M@
* @
M@
M@
* @
* @
* @
* @
* @
* @
*
* @
* @
* @
^+
^+
^
^+
^+
^+
^+
^+
^
^+
^+
^+
^
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^
^
^+
^+
^+
^+
^
^+
^+
^
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^+
^
^+
^+
^+
AVX DSCC & COTS-Plus P/N
TBJ B 226 * 020 C
TBJ C 226 * 020 C
TBJ D 226 * 020 C
TBJ C 336 * 020 C
TBJ D 336 * 020 C
TBJ D 336 * 020 L
TBJ D 476 * 020 C
TBJ D 476 * 020 L
TBJ E 476 * 020 C
TBJ D 686 * 020 C
TBJ D 686 * 020 L
TBJ E 686 * 020 C
TBJ E 686 * 020 L
TBJ V 107 * 020 L
TBJ A 684 M 025 C
TBJ A 105 * 025 C
TBJ A 155 * 025 C
TBJ A 155 * 025 L
TBJ A 225 * 025 C
TBJ B 225 * 025 C
TBJ B 335 * 025 C
TBJ A 475 * 025 C
TBJ B 475 * 025 C
TBJ B 475 * 025 L
TBJ B 685 * 025 C
TBJ B 685 * 025 L
TBJ C 685 * 025 C
TBJ C 106 * 025 C
TBJ C 106 * 025 L
TBJ D 156 * 025 C
TBJ E 156 * 025 C
TBJ C 226 * 025 C
TBJ C 226 * 025 L
TBJ D 226 * 025 C
TBJ D 226 * 025 L
TBJ E 226 * 025 L
TBJ D 336 * 025 C
TBJ D 336 * 025 L
TBJ E 336 * 025 C
TBJ E 336 * 025 L
TBJ D 476 M 025 C
TBJ D 476 M 025 L
TBJ V 686 * 025 L
TBJ A 474 M 035 C
TBJ A 684 M 035 C
TBJ A 105 * 035 C
TBJ A 155 * 035 C
TBJ B 155 * 035 C
TBJ B 225 * 035 C
TBJ B 335 * 035 C
TBJ B 475 * 035 C
TBJ C 475 * 035 C
TBJ D 475 * 035 L
TBJ C 685 * 035 C
TBJ D 685 * 035 C
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
# @ 0 ^ ++
Case
B
C
D
C
D
D
D
D
E
D
D
E
E
V
A
A
A
A
A
B
B
A
B
B
B
B
C
C
C
D
E
C
C
D
D
E
D
D
E
E
D
D
V
A
A
A
A
B
B
B
B
C
D
C
D
Cap
@ 120Hz
μF
@ 25ºC
22
22
22
33
33
33
47
47
47
68
68
68
68
100
0.7
1.0
1.5
1.5
2.2
2.2
3.3
4.7
4.7
4.7
6.8
6.8
6.8
10
10
15
15
22
22
22
22
22
33
33
33
33
47
47
68
0.47
0.68
1.0
1.5
1.5
2.2
3.3
4.7
4.7
4.7
6.8
6.8
Parametric Specifications by Rating per DSCC 95158 or 07016 where applicable
DC Rated
ESR
DCL max
DF Max
Voltage @ 100kHz
+25ºC
+85ºC
+125ºC
+25ºC
+(85/125)ºC
-55ºC
V
mOhms
(μA)
(μA)
(μA)
(%)
(%)
(%)
@ +85ºC @ +25ºC
20
600
4.4
44
53
6
8
10
20
400
4.4
44
53
6
8
10
20
275
3.5
21
35
4
6
6
20
300
6.6
66
79
6
8
10
20
200
6.6
66
79
6
8
10
20
100
6.6
66
79
6
8
10
20
200
9.4
94
113
6
8
10
20
100
9.4
94
113
6
8
10
20
150
7.5
45
75
4
6
6
20
200
13.6
136
163
6
8
10
20
70
13.6
136
163
6
8
10
20
200
13.6
136
163
6
8
10
20
150
13.6
136
170
6
8
9
20
60
20
200
240
8
10
12
25
10000
0.5
5
6
4
6
8
25
8000
0.5
5
6
4
6
8
25
7500
0.5
5
6
6
8
10
25
3000
0.5
5
6
6
8
10
25
7000
0.5
5
6
6
8
10
25
2000
0.5
5
6
6
8
10
25
2000
0.5
5
6
6
8
10
25
3100
1.2
12
14
6
9
10
25
1500
1.2
12
14
6
8
10
25
700
1.2
12
14
6
8
10
25
2800
1.7
17
20
6
8
10
25
700
1.7
17
20
6
8
10
25
700
1.7
17
20
6
8
10
25
500
2.5
25
30
6
8
10
25
300
2.5
25
30
6
8
10
25
275
3.8
38
46.9
6
9
9
25
200
3
18
30
4
6
6
25
400
5.5
55
66
6
8
10
25
275
5.5
55
66
6
8
10
25
200
5.5
55
66
6
8
10
25
100
5.5
55
66
6
8
10
25
225
4.4
26.4
44
4
6
6
25
300
8.3
83
100
6
8
10
25
100
8.3
83
100
6
8
10
25
175
6.6
39.6
66
4
6
6
25
100
8.3
83
100
6
8
10
25
250
11.8
118
142
6
8
10
25
175
11.8
118
142
6
8
10
25
95
17
170
204
8
10
12
35
12000
0.5
5
6
4
6
8
35
8000
0.5
5
6
4
6
8
35
7500
0.5
5
6
4
6
6
35
7500
0.5
5
6
6
8
9
35
5200
0.5
5
6
6
8
9
35
2000
0.8
8
10
6
8
9
35
1000
1.2
12
14
6
8
9
35
1500
1.6
16
19
6
8
9
35
600
1.6
10.2
17
6
8
9
35
450
1.6
16
20
6
8
9
35
350
2.4
24
29
6
9
9
35
400
2.4
24
29
6
9
9
25ºC
Dissipation
Ripple
A
W
(100kHz)
0.085
0.38
0.110
0.52
0.150
0.74
0.110
0.61
0.150
0.87
0.150
1.22
0.150
0.87
0.150
1.22
0.165
1.05
0.150
0.87
0.150
1.46
0.165
0.91
0.165
1.05
0.250
2.04
0.075
0.09
0.075
0.10
0.075
0.10
0.075
0.16
0.075
0.10
0.085
0.21
0.085
0.21
0.075
0.16
0.085
0.24
0.085
0.35
0.085
0.17
0.085
0.35
0.110
0.40
0.110
0.47
0.110
0.61
0.150
0.74
0.165
0.91
0.110
0.52
0.110
0.63
0.150
0.87
0.150
1.22
0.165
0.86
0.150
0.71
0.150
1.22
0.165
0.97
0.165
1.35
0.150
0.77
0.150
0.93
0.250
1.62
0.075
0.08
0.075
0.10
0.075
0.10
0.075
0.10
0.085
0.13
0.085
0.21
0.085
0.29
0.085
0.24
0.110
0.43
0.110
0.49
0.150
0.65
0.165
0.64
Power
Typical Ripple Data by Rating
85ºC
125ºC
25ºC
Ripple
Ripple
Ripple
A
A
V
(100kHz) (100kHz) (100kHz)
0.34
0.15
0.23
0.47
0.21
0.21
0.66
0.30
0.20
0.54
0.24
0.18
0.78
0.35
0.17
1.10
0.49
0.12
0.78
0.35
0.17
1.10
0.49
0.12
0.94
0.42
0.16
0.78
0.35
0.17
1.32
0.59
0.10
0.82
0.36
0.18
0.94
0.42
0.16
1.84
0.82
0.12
0.08
0.03
0.87
0.09
0.04
0.77
0.09
0.04
0.75
0.14
0.06
0.47
0.09
0.04
0.72
0.19
0.08
0.41
0.19
0.08
0.41
0.14
0.06
0.48
0.21
0.10
0.36
0.31
0.14
0.24
0.16
0.07
0.49
0.31
0.14
0.24
0.36
0.16
0.28
0.42
0.19
0.23
0.54
0.24
0.18
0.66
0.30
0.20
0.82
0.36
0.18
0.47
0.21
0.21
0.57
0.25
0.17
0.78
0.35
0.17
1.10
0.49
0.12
0.77
0.34
0.19
0.64
0.28
0.21
1.10
0.49
0.12
0.87
0.39
0.17
1.22
0.54
0.12
0.70
0.31
0.19
0.83
0.37
0.16
1.46
0.65
0.15
0.07
0.03
0.95
0.09
0.04
0.77
0.09
0.04
0.75
0.09
0.04
0.75
0.12
0.05
0.66
0.19
0.08
0.41
0.26
0.12
0.29
0.21
0.10
0.36
0.39
0.17
0.26
0.44
0.20
0.22
0.59
0.26
0.23
0.58
0.26
0.26
85ºC
Ripple
V
(100kHz)
0.20
0.19
0.18
0.16
0.16
0.11
0.16
0.11
0.14
0.16
0.09
0.16
0.14
0.11
0.78
0.70
0.68
0.43
0.65
0.37
0.37
0.43
0.32
0.22
0.44
0.22
0.25
0.21
0.16
0.18
0.16
0.19
0.16
0.16
0.11
0.17
0.19
0.11
0.15
0.11
0.17
0.15
0.14
0.85
0.70
0.68
0.68
0.60
0.37
0.26
0.32
0.23
0.20
0.21
0.23
125ºC
Ripple
V
(100kHz)
0.09
0.08
0.08
0.07
0.07
0.05
0.07
0.05
0.06
0.07
0.04
0.07
0.06
0.05
0.35
0.31
0.30
0.19
0.29
0.16
0.16
0.19
0.14
0.10
0.20
0.10
0.11
0.09
0.07
0.08
0.07
0.08
0.07
0.07
0.05
0.08
0.08
0.05
0.07
0.05
0.08
0.06
0.06
0.38
0.31
0.30
0.30
0.27
0.16
0.12
0.14
0.10
0.09
0.09
0.10
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: AVX reserves the right to supply a higher voltage rating or tighter tolerance part in the same case size, to the same reliability standards.
Selling some development boards, please move on!https://s.2.taobao.com/list/list.htm?spm=2007.1000261.0.0.7b048a669X2d0Tusernick=jiaziqian88https://2.taobao.com/item.htm?spm=2007.1000338.6.12.417f19ef...
[align=left]As we all know, lightning is extremely destructive, with a voltage of millions of volts and an instantaneous current of hundreds of thousands of amperes. The destructive consequences of li...
I found that everyone likes to use KEIL (MDK), but not IAR. I like IAR. Here is a template for reference only. I think it is very useful.
1. Install the IAR development environment. I won’t go into de...
[NXP Rapid IoT Review] + NXP Rapid IoT Unexpected Bluetooth IoT When we use Bluetooth, we need to understand the development environment and BLE protocol, which takes a long time to familiarize oursel...
Coordinated motion of positioners is a motion control method. Coordinated motion can make the motion speed of two motion groups relatively constant. Combined with the coordination function of posit...[Details]
Introduction
In order to meet the application requirements of smart cards and trusted computing, a dedicated SoC chip is designed and implemented. The chip consists of a microprocessor, program...[Details]
During the welding process of LED energy-saving lamps , we often encounter the problem of how to identify the positive and negative poles of the light-emitting diodes. This is particularly impo...[Details]
ScioSense launches the industry-leading high-precision and high-performance digital temperature and humidity sensor ENS21X series
•
Industry-leading precision
•
Fast...[Details]
Intel Labs launches beta version of Intel Quantum Software Development Kit Quantum computing has the potential to significantly speed up the solution of complex problems and may also enable major ...[Details]
Mouser Electronics, Inc., the leading New Product Introduction (NPI) and global semiconductor distributor with the broadest inventory of semiconductors and electronic components, is proud to announce...[Details]
There are a large number of mineral resources and microbial communities on the deep seabed. Research on biological mineralization, the origin of life, etc. in this environment will help to clarify ...[Details]
Preface
Looking back over the past few years, reducers have experienced the golden age of "shortage of supply" in 2017, the silver age of "oversupply" in 2018, and the bronze age of "survi...[Details]
Author: Mark Himelstein, CTO of RISC-V Foundation RISC-V is now a decade old. Here’s a look at what the RISC-V Foundation has accomplished and how it’s moving forward with extensions targeting spec...[Details]
The MAX19994A dual-channel downconverter from Maxim is designed to provide 8.4dB of conversion gain, +25dBm input IP3, +14dBm input 1dB compression point, and single power supply 5.0V or 3.3V opera...[Details]
Ericsson recently announced that it is working with MIT on two scientific research projects that will help build new network infrastructure to provide better hardware support for the next generation ...[Details]
The circuit shown in Figure 1 is a 10MHz to 6GHz broadband active mixer with an integrated interface for direct connection to a synthesizer-based low phase noise local oscillator (LO). This circu...[Details]
Now, taking the bus cycle of the ARM7TDMI core as an example, the bus signals and bus timing of the ARM processor are introduced.
1. A (address): 32-bit address bus. The relevant control signals...[Details]
As the main communication equipment to extend the data transmission distance, the optical terminal mainly uses the characteristics of light transmission through signal modulation, photoelectric conver...[Details]