电子工程世界电子工程世界电子工程世界

关键词

搜索

型号

搜索

TBJD226K035CWSB0723

产品描述Tantalum Capacitor, Polarized, Tantalum (dry/solid), 35V, 10% +Tol, 10% -Tol, 22uF, 2917, ROHS COMPLIANT
产品类别无源元件    电容器   
文件大小947KB,共11页
制造商AVX
标准
下载文档 详细参数 全文预览

TBJD226K035CWSB0723概述

Tantalum Capacitor, Polarized, Tantalum (dry/solid), 35V, 10% +Tol, 10% -Tol, 22uF, 2917, ROHS COMPLIANT

TBJD226K035CWSB0723规格参数

参数名称属性值
是否Rohs认证符合
厂商名称AVX
包装说明, 2917
Reach Compliance Codecompliant
ECCN代码EAR99
电容22 µF
电容器类型TANTALUM CAPACITOR
介电材料TANTALUM (DRY/SOLID)
ESR400 mΩ
高度2.9 mm
JESD-609代码e3
长度7.3 mm
负容差10%
端子数量2
最高工作温度125 °C
最低工作温度-55 °C
封装形式SMT
包装方法Waffle Pack
极性POLARIZED
正容差10%
额定(直流)电压(URdc)35 V
参考标准MIL-PRF-55365
尺寸代码2917
端子面层Matte Tin (Sn)
宽度4.3 mm

TBJD226K035CWSB0723文档预览

TBJ Series
COTS-Plus
The TBJ COTS-Plus series, based on the
CWR11 form factor, is a high reliability
series encompassing the current range
of EIA Low ESR ratings. These ratings
are available with Weibull grading (B and
C), surge current testing (A, B, C) per MIL-
PRF-55365 Rev. G, and optional Group A
from MIL-PRF-55365.
For Space Level applications, AVX
SRC9000 qualification is recommended.
Please refer to the TBJ COTS-Plus
SRC9000 Datasheet for part number
availability.
There are five termination finishes
available: solder plated, fused solder plated,
hot solder dipped, 100% Tin and gold
plated (these correspond to “H”, “K”, “C”,
“7” and “B” termination, respectively). The
molding compound has been selected to
meet the requirements of UL94V-0 (Flame
Retardancy) and outgassing requirements
of ASTM E-595.
For moisture sensitivity levels please
refer to the High Reliability Tantalum MSL
section located in the back of the High
Reliability Tantalum Catalog.
CASE DIMENSIONS:
millimeters (inches)
L
W
Code
A
B
C
D
E
V
EIA
Code
1206
1210
2312
2917
2917
2924
EIA
Metric
L±0.20
(0.008)
W+0.20 (0.008) H+0.20 (0.008)
-0.10 (0.004)
-0.10 (0.004)
1.60 (0.063)
2.80 (0.110)
3.20 (0.126)
4.30 (0.169)
4.30 (0.169)
6.10 (0.240)
1.60 (0.063)
1.90 (0.075)
2.60 (0.102)
2.90 (0.114)
4.10 (0.162)
3.55 (0.140)
W
1
±0.20
(0.008)
1.20 (0.047)
2.20 (0.087)
2.20 (0.087)
2.40 (0.094)
2.40 (0.094)
3.10 (0.120)
A+0.30 (0.012)
-0.20 (0.008)
S Min.
H
3216-18 3.20 (0.126)
3528-21 3.50 (0.138)
6032-28 6.00 (0.236)
7343-31 7.30 (0.287)
7343-43 7.30 (0.287)
7361-38 7.30 (0.287)
0.80 (0.031) 1.10 (0.043)
0.80 (0.031) 1.40 (0.055)
1.30 (0.051) 2.90 (0.114)
1.30 (0.051) 4.40 (0.173)
1.30 (0.051) 4.40 (0.173)
1.30 (0.051) 4.40 (0.173)
A
S
A
W
1
MARKING
A, B, C, D, E, V CASE
AVX LOGO
Polarity
Band
(Anode+)
Capacitance Value in pF
227 = 220µF
Rated Voltage Code
A = 10V
ID Code
W
1
dimension applies to the termination width for A dimensional area only.
227 A
XXXXX
HOW TO ORDER
AVX PART NUMBER:
TBJ
Type
D
Case
Size
227
*
035
C
B
S
Z
0
0
00
Surge Test
Option
00 = None
23 = 10 Cycles,+25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
Voltage
Packaging Inspection Level
Capacitance Capacitance
ESR
C = Std ESR B = Bulk
S = Std.
Code
Code
Tolerance
Conformance
pF code:
K = ±10% 002 = 2Vdc L = Low ESR R = 7” T&R
L = Group A
1st two digits M = ±20% 004 = 4Vdc
S = 13” T&R
represent
006 = 6Vdc
W = Waffle
significant
010 = 10Vdc
figures 3rd
016 = 16Vdc
digit represents
020 = 20Vdc
multiplier
025 = 25Vdc
(number of
zeros to follow)
035 = 35Vdc
050 = 50Vdc
Reliability Grade Qualification Termination Finish
H = Solder Plated
Weibull:
Level
B = 0.1%/1000 hrs.
0 = N/A 0 = Fused Solder
Plated
90% conf.
8 = Hot Solder
C = 0.01%/1000 hrs.
Dipped
90% conf.
9 = Gold Plated
Z = Non-ER
7 = Matte Sn
LEAD-FREE COMPATIBLE
COMPONENT
For RoHS compliant products,
please select correct termination style.
TECHNICAL SPECIFICATIONS
Technical Data:
Capacitance Range:
Capacitance Tolerance:
Rated Voltage (V
R
)
Category Voltage (V
C
)
Surge Voltage (V
S
)
Surge Voltage (V
S
)
Temperature Range:
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
≤ 85°C:
≤125°C:
≤ 85°C:
≤125°C:
44
012819
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
2.2
3.3
4.7
6.8
10
15
22
104
154
224
334
474
684
105
155
225
335
475
685
106
156
226
A(3000)
C(2200)
A(8000)
B(5500)
B(4000)
B(3500)
A(8000)
A(8000)
A(8000)
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)
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)
A(10000)
A(8000)
A(1800, 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)
D(1100)
C(2500)
A(12000)
A(10000)
A(8000)
B(5500)
B(5000)
B(4000)
A(1800, 5500)
B(5000)
A(3500, 5000)`
B(4500)
A(2000, 4000)
B(800, 3100)
A(1500, 2500)
B(60, 2500)
A(1000, 3000)
B(500, 2800)
C(500, 2500)
B(800, 2500)
C(1800)
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)
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)
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)
50V (T)
A(22000)
A(9000, 21000)
A(21000)
B(17000)
A(7000, 18000)
A(6000, 18000)
B(14000)
A(6000, 15000)
B(12000)
A(6000, 12000)
C(8000)
A(7000, 14000)
B(4000, 10000)
A(6000, 10000) A(6000, 8000)
A(7900)
B(7500)
B(8000)
C(7000)
A(3000, 7500)
C(2500, 6000)
A(8000) B(6500)
B(2000, 6500)
A(7500)
C(1500, 5000)
A(3000, 7500)
B(2500, 5200)
D(4000)
B(1800, 6500)
C(4500)
A(1500, 4500)
A(7000)
B(2000, 4200)
D(1200, 2500)
B(900, 4500)
C(1000, 3500)
C(3500)
A(1000, 1500)
B(1000, 3500)
D(800, 2000)
B(750, 3500)
C(700, 2500)
C(3500)
B(700, 3100)
A(2800)
C(600, 2200)
D(300, 1500)
B(1500, 2800)
D(500, 1500)
C(2500)
B(700, 2800)
C(350, 1800)
D(500, 1000)
C(500, 2000)
D(500, 1300)
D(1400)
C (600, 1600)
E(400, 500)
C (500, 1800)
D (300,1000)
V(650)
D(1200)
E(200, 250)
C(220, 300)
D(300, 1000)
C(275, 1400)
D(200, 900)
D(100, 900)
E(300, 900)
D(250, 900)
E(80, 100)
E(125, 200)
V(95)
V(100)
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)
V(150, 200)
D(600)
E(250, 600)
V(390, 600)
33
336
D(900)
47
476
A(500)
68
686
D(1100)
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)
100
107
150
220
330
470
680
1000
1500
157
227
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. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
45
080719
TBJ Series
COTS-Plus
Parametric Specifications by Rating per MIL-PRF-55365/4
RATING & PART
DCL max
DF Max
DC Rated
Cap
ESR
NUMBER REFERENCE
@
120Hz Voltage
@
100kHz +25ºC
+(85/125)ºC
+85ºC
+125ºC
+25ºC
AVX COTS-Plus P/N Case
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^++
TBJA155*006C#@0^++
TBJA225*006C#@0^++
TBJA335*006C#@0^++
TBJB475*006C#@0^++
TBJA685*006C#@0^++
TBJA685*006L#@0^++
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
A
A
A
B
A
A
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
1.5
2.2
3.3
4.7
6.8
6.8
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
6
6
6
6
6
6
mOhms
@
+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
8
8
8
5.5
5
1.8
-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
9
9
9
9
10
10
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
0.075
0.075
0.075
0.085
0.075
0.075
Ripple Current Ripple Current
25ºC
Typical RMS Ripple Data by Rating
85ºC
125ºC
25ºC
85ºC
Ripple Current
Ripple Current Ripple Current Ripple Current
125ºC
(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
0.09
0.132
0.198
0.282
0.408
0.408
(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
0.9
1.32
1.98
2.82
4.08
4.08
(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
1.08
1.584
2.376
3.384
8.16
8.16
(%)
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
6
6
6
6
6
6
(%)
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
9
9
9
9
9
9
mA
(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
0.097
0.097
0.097
0.124
0.122
0.204
mA
(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
0.087
0.087
0.087
0.112
0.110
0.184
mA
(100kHz)
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
0.039
0.039
0.039
0.050
0.049
0.082
mV
mV
(100kHz) (100kHz)
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
0.775
0.775
0.775
0.684
0.612
0.367
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
0.697
0.697
0.697
0.615
0.551
0.331
mV
(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
0.310
0.310
0.310
0.273
0.245
0.147
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.
46
012819
TBJ Series
COTS-Plus
Parametric Specifications by Rating per MIL-PRF-55365/4
RATING & PART
DCL max
DF Max
DC Rated
Cap
ESR
NUMBER REFERENCE
@
120Hz Voltage
@
100kHz +25ºC
+(85/125)ºC
+85ºC
+125ºC
+25ºC
AVX COTS-Plus P/N Case
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^++
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^++
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
V
D
D
E
E
V
V
E
E
V
V
μF
@
25ºC
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
330
470
470
470
470
470
470
680
680
680
680
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
6
6
6
6
6
mOhms
@
+25ºC
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
0.1
0.06
0.045
0.9
0.05
0.1
0.055
0.06
0.045
0.04
0.035
-55ºC
(%)
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
12
16
16
14
14
12
14
14
14
14
20
Power
Dissipation
W
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
0.250
0.150
0.150
0.165
0.165
0.250
0.250
0.165
0.165
0.250
0.250
Ripple Current Ripple Current
25ºC
Typical RMS Ripple Data by Rating
85ºC
125ºC
25ºC
85ºC
Ripple Current
Ripple Current Ripple Current Ripple Current
125ºC
(μA)
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
19.8
28.2
28.2
28.2
28.2
28.2
28.2
40.8
40.8
40.8
40.8
(μA)
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
198
282
282
282
282
282
282
408
408
408
408
(μA)
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
396
564
564
564
564
564
564
816
816
816
816
(%)
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
8
12
12
10
10
10
10
10
10
10
14
(%)
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
10
14
14
12
12
12
12
12
12
12
17
mA
(100kHz)
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
1.581
1.581
1.826
0.428
1.817
1.581
2.132
1.658
1.915
2.500
2.673
mA
(100kHz)
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
1.423
1.423
1.643
0.385
1.635
1.423
1.919
1.492
1.723
2.250
2.405
mA
(100kHz)
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
0.632
0.632
0.730
0.171
0.727
0.632
0.853
0.663
0.766
1.000
1.069
mV
mV
(100kHz) (100kHz)
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
0.158
0.095
0.082
0.385
0.091
0.158
0.117
0.099
0.086
0.100
0.094
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
0.142
0.085
0.074
0.347
0.082
0.142
0.106
0.090
0.078
0.090
0.084
mV
(100kHz)
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
0.063
0.038
0.033
0.154
0.036
0.063
0.047
0.040
0.034
0.040
0.037
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.
47
012819
TBJ Series
COTS-Plus
Parametric Specifications by Rating per MIL-PRF-55365/4
RATING & PART
DCL max
DF Max
DC Rated
Cap
ESR
NUMBER REFERENCE
@
120Hz Voltage
@
100kHz +25ºC
+(85/125)ºC
+85ºC
+125ºC
+25ºC
AVX COTS-Plus P/N Case
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^++
TBJC686*010L#@0^++
TBJD686*010C#@0^++
TBJD686*010L#@0^++
TBJB107*010L#@0^++
TBJC107*010C#@0^++
TBJC107*010L#@0^++
TBJD107*010C#@0^++
TBJD107*010L#@0^++
TBJE107*010C#@0^++
TBJD157*010C#@0^++
TBJD157*010L#@0^++
TBJE157*010C#@0^++
TBJD227*010C#@0^++
TBJD227*010L#@0^++
TBJE227*010C#@0^++
TBJE227*010L#@0^++
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
C
D
D
B
C
C
D
D
E
D
D
E
D
D
E
E
μF
@
25ºC
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
68
68
68
100
100
100
100
100
100
150
150
150
220
220
220
220
V
@
+85ºC
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
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
mOhms
@
+25ºC
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
0.08
0.9
0.1
0.4
1.2
0.2
0.9
0.1
0.125
0.9
0.1
0.1
0.9
0.15
0.9
0.1
-55ºC
(%)
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
12
10
10
12
12
12
10
10
10
12
12
12
12
12
12
12
Power
Dissipation
W
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
0.110
0.150
0.150
0.085
0.110
0.110
0.150
0.150
0.165
0.150
0.150
0.165
0.150
0.150
0.165
0.165
Ripple Current Ripple Current
25ºC
Typical RMS Ripple Data by Rating
85ºC
125ºC
25ºC
85ºC
Ripple Current
Ripple Current Ripple Current Ripple Current
125ºC
(μA)
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
6.8
6.8
6.8
10
10
10
10
10
10
15
15
15
22
22
22
22
(μA)
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
68
68
68
100
100
100
100
100
100
150
150
150
220
220
220
220
(μA)
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
136
136
136
200
200
200
200
200
200
300
300
300
440
440
440
440
(%)
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
6
6
6
8
8
8
6
6
6
8
8
8
8
8
8
8
(%)
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
10
9
9
10
10
10
9
9
9
10
10
10
10
10
10
10
mA
(100kHz)
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
1.173
0.408
1.225
0.461
0.303
0.742
0.408
1.225
1.285
0.408
1.225
1.285
0.408
1.000
0.428
1.285
mA
(100kHz)
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
1.055
0.367
1.102
0.415
0.272
0.667
0.367
1.102
1.156
0.367
1.102
1.156
0.367
0.900
0.385
1.156
mA
(100kHz)
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
0.469
0.163
0.490
0.184
0.121
0.297
0.163
0.490
0.514
0.163
0.490
0.514
0.163
0.400
0.171
0.514
mV
mV
(100kHz) (100kHz)
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
0.094
0.367
0.122
0.184
0.363
0.148
0.367
0.122
0.128
0.367
0.122
0.128
0.367
0.150
0.385
0.128
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
0.084
0.331
0.110
0.166
0.327
0.133
0.331
0.110
0.116
0.331
0.110
0.116
0.331
0.135
0.347
0.116
mV
(100kHz)
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
0.038
0.147
0.049
0.074
0.145
0.059
0.147
0.049
0.051
0.147
0.049
0.051
0.147
0.060
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: 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
012819
再来一拨儿:这款 MCU 有些酷!
有没有兴趣试试呢? 通常而言,电容式触控面板有时会比较难以处理,尤其是在下雨的时候,落下的雨滴与指尖的触感十分相似,而当用干毛巾擦拭面板时,还可能导致少部分微控制器(MCU)失控。 ......
soso 微控制器 MCU
蓄电池充电影响stm32 adc采样?
367056 网络标号v27_o对负载供电,FG1对蓄电池充电。 问题: 当蓄电池接头拔掉没插入时候,V27_1_ADC采样波动小,蓄电池接入充电时候,V27_1_ADC采样值会经常出现较大的偏差值。 请问这是什 ......
肖柳子 DIY/开源硬件专区
这个版块好安静
如题...
电子学习员 实时操作系统RTOS
北京招聘算法工程师
本帖最后由 lyncxy119 于 2016-1-9 11:09 编辑 岗位职责: 1. 传感器信号降噪,信号提取等算法的开发维护; 2. 对现有的不同的算法进行仿真测试,并用 Matlab/C 语言实现; 3. 对收集的真 ......
lyncxy119 求职招聘
基于CC3120/CC3220产品介绍 物联网(IoT)解决方案
TI 的 CC3120/CC3220 器件是由 Wi-Fi、低功耗、次 1 GHz 和主机 MCU 组成的 SimpleLink 微控制器(MCU)平台的一部分,这些组件共享一个通用而易于使用的开发环境,带有单核软件开发工具包( ......
Jacktang 无线连接
MSP430的触摸按键
触摸按键的实现主要是通过检测板级系统上构建的RC振荡电路在固定时间内的振荡次数,如果振荡次数发生明显变化,则判断为触摸状态。那么振荡次数主要是由RC的值决定,在系统中R值是固定的,而 ......
火辣西米秀 微控制器 MCU

 
EEWorld订阅号

 
EEWorld服务号

 
汽车开发圈

 
机器人开发圈

About Us 关于我们 客户服务 联系方式 器件索引 网站地图 最新更新 手机版

站点相关: 大学堂 TI培训 Datasheet 电子工程 索引文件: 2665  2044  2597  2716  1569  54  42  53  55  32 

器件索引   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

北京市海淀区中关村大街18号B座15层1530室 电话:(010)82350740 邮编:100190

电子工程世界版权所有 京B2-20211791 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号 Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved