EEWORLDEEWORLDEEWORLD

Part Number

Search

TAZE475M020LSLZ9023

Description
Tantalum Capacitor, Polarized, Tantalum (dry/solid), 20V, 20% +Tol, 20% -Tol, 4.7uF, Surface Mount, 2010, CHIP
CategoryPassive components    capacitor   
File Size114KB,12 Pages
ManufacturerAVX
Download Datasheet Parametric View All

TAZE475M020LSLZ9023 Overview

Tantalum Capacitor, Polarized, Tantalum (dry/solid), 20V, 20% +Tol, 20% -Tol, 4.7uF, Surface Mount, 2010, CHIP

TAZE475M020LSLZ9023 Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
Objectid2106375441
package instruction, 2010
Reach Compliance Codecompliant
ECCN codeEAR99
YTEOL7.17
capacitance4.7 µF
Capacitor typeTANTALUM CAPACITOR
dielectric materialsTANTALUM (DRY/SOLID)
JESD-609 codee0
leakage current0.001 mA
Installation featuresSURFACE MOUNT
negative tolerance20%
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package shapeRECTANGULAR PACKAGE
method of packingTR, 13 INCH
polarityPOLARIZED
positive tolerance20%
Rated (DC) voltage (URdc)20 V
size code2010
surface mountYES
Delta tangent0.06
Terminal surfaceTin/Lead (Sn/Pb)
Terminal shapeJ BEND
SRC9000 Series
High Reliability Tantalum Capacitors for Space Applications
AVX SRC9000 microminiature capaci-
tors are designed and built to meet the
high reliability and long term require-
ments of military space applications.
All SRC9000 capacitors meet all of the
requirements of Mil-PRF-55365 and
include DPA requirements per MIL-
STD-1580. SRC9000 establishes a
rigorous screening test schedule
designed to detect and eliminate from
shipment any capacitor or capacitor
test lots that exhibits poor perform-
ance or reliability. SRC9000 establish-
es a continuous test schedule to
determine baseline reliability data for
specific product shipped under this
specification. SRC9000 assures that
proper lot control and lot traceability
procedures are in effect.
CASE DIMENSIONS:
millimeters (inches)
Case
Code
A
TBJ
H
Type
TAZ
Length (L)
2.54±0.38
(0.100±0.015)
Width (W)
Height (H)
Term. Width
(W1)
1.27±0.13
(0.050±0.005)
1.20±0.20
(0.047±0.008)
1.27±0.13
(0.050±0.005)
2.20±0.20
(0.087±0.008)
1.27±0.13
(0.050±0.005)
2.20±0.20
(0.087±0.008)
2.41
-0.25
(0.095
+0.005
)
-0.010
+0.13
Term. Length
(A)
0.76±0.13
(0.030±0.005)
0.80
-0.20
(0.031
+0.012
)
-0.008
+0.30
S min
1.80
(0.071)
1.80
(0.071)
1.65
(0.065)
1.40
(0.055)
2.92
(0.115)
2.90
(0.114)
1.65
(0.065)
4.40
(0.173)
2.92
(0.115)
4.40
(0.173)
3.43
(0.135)
3.56
(0.140)
0.70
(0.028)
1.80
(0.071)
N/A
1.27±0.38
1.27±0.38
(0.050±0.015) (0.050±0.015)
+0.20
+0.20
L
W
1.60
-0.10
1.60
-0.10
3.20±0.20
+0.008
) (0.063
+0.008
)
(0.126±0.008) (0.063
-0.004
-0.004
TAZ
B
A
S
A
W
1
3.81±0.38
(0.150±0.015)
1.27±0.38
1.27±0.38
(0.050±0.015) (0.050±0.015)
+0.20
+0.20
0.76±0.13
(0.030±0.005)
0.80
-0.20
(0.031
+0.012
)
-0.008
+0.30
TBJ
TAZ
C
TBJ
2.80
-0.10
1.90
-0.10
3.50±0.20
(0.138±0.008) (0.110
+0.008
) (0.075
+0.008
)
-0.004
-0.004
5.08±0.38
(0.200±0.015)
1.27±0.38
1.27±0.38
(0.050±0.015) (0.050±0.015)
0.76±0.13
(0.030±0.005)
1.30
+0.30
-0.20
(0.051
+0.012
)
-0.008
0.76±0.13
(0.030±0.005)
1.30
-0.20
(0.051
+0.012
)
-0.008
+0.30
3.20
+0.20
2.60
+0.20
6.00±0.20
-0.10
-0.10
(0.236±0.008) (0.126
+0.008
) (0.102
+0.008
)
-0.004
-0.004
TAZ
D
TBJ
TAZ
E
TBJ
F
G
H
TAZ
TAZ
TAZ
3.81±0.38
(0.150±0.015)
2.54±0.38
1.27±0.38
(0.100±0.015) (0.050±0.015)
+0.20
+0.20
4.30
-0.10
2.90
-0.10
7.30±0.20
(0.287±0.008) (0.169
+0.008
) (0.114
+0.008
)
-0.004
-0.004
2.40±0.20
(0.094±0.008)
2.41
-0.25
(0.095
+0.005
)
-0.010
+0.13
5.08±0.38
(0.200±0.015)
2.54±0.38
1.27±0.38
(0.100±0.015) (0.050±0.015)
4.30
+0.20
-0.10
4.10
+0.20
-0.10
0.76±0.13
(0.030±0.005)
1.30
+0.30
-0.20
(0.051
+0.012
)
-0.008
7.30±0.20
(0.287±0.008) (0.169
+0.008
) (0.162
+0.008
)
-0.004
-0.004
2.40±0.20
(0.094±0.008)
3.30±0.13
(0.130±0.005)
2.67±0.13
(0.105±0.005)
3.68
-0.51
(0.145
+0.005
)
-0.020
+0.13
5.59±0.38
(0.220±0.015)
6.73±0.38
(0.265±0.015)
7.24±0.38
(0.285±0.015)
3.43±0.38
1.78±0.38
(0.135±0.015) (0.070±0.015)
2.79±0.38
2.79±0.38
(0.110±0.015) (0.110±0.015)
3.81±0.38
2.79±0.38
(0.150±0.015) (0.110±0.015)
0.76±0.13
(0.030±0.005)
1.27±0.13
(0.050±0.005)
1.27±0.13
(0.050±0.005)
1.40
+0.30
-0.20
(0.055
+0.012
)
-0.008
1.19 (0.047)
V
X
TBJ
TAZ
6.10
+0.20
7.30±0.20
3.45±0.30
-0.10
(0.287±0.008) (0.240
+0.008
) (0.136±0.012)
-0.004
6.93 Max
(0.273)
5.41 Max
(0.213)
2.74 Max
(0.108)
3.10±0.20
(0.120±0.008)
3.05±0.13
(0.120±0.005)
HOW TO ORDER
D
Type
(3 letters)
TBJ
TAZ
Case
Size
227
Capacitance
Code
*
006
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
#@
Qualification/
Packaging
Reliability
B = Bulk
# = Inspection Level
R = 7" T&R
S = 13" T&R S = Std. Conformance
L = Group A
@ = Failure Rate Level
Weibull:
B = 0.1%/1000 hrs.
(90% C = 0.01%/
1000 hrs. conf.)
Comm: Z = Non ER
90
Termination
Finish
90 = SRC9000
++
Surge Test
Option
00 = None
23 = 10 cycles,
+25°C
24 = 10 cycles,
-55°C &
+85°C
45 = 10 cycles,
-55ºC &
+85ºC
before
Weibull
Capacitance
Voltage
Tolerance
Code
M = ±20% 004 = 4Vdc
K = ±10% 006 = 6Vdc
J = ±5%
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
100
Bike Ramp
A unique invention exhibition was held in London, England. This exhibition attracted inventors with wonderful ideas from all over the world, who brought a large number of the most bizarre inventions i...
xyh_521 Creative Market
About ADC and external interrupt
:Cry::Cry::Cry: I am a novice. When the external key interrupt, on-chip ADC and PWM modules of my MSP430F149 are running separately, they are all normal. However, when they are combined, the ADC and P...
hl101200 Microcontroller MCU
Simple smart electric car (very comprehensive)
[i=s] This post was last edited by paulhyde on 2014-9-15 03:01 [/i] Very comprehensive information on simple smart electric vehicle including: software program hardware circuit design report physical ...
zhanghailong Electronics Design Contest
Does the I2C part in the STM32 3.0 firmware library solve the bug in the 2.0 firmware library?
The 2.0 I2C library gave me a headache at first, so I had to use soft I2C to implement it....
haiyaofa280 stm32/stm8
Circuit of single chip microcomputer controlled solenoid valve
I am a novice and want to use a single-chip microcomputer to control the opening and closing of a solenoid valve. Could you please give me some advice? It would be best if you could attach a circuit d...
silentstorm321f MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2826  2088  247  2769  720  57  43  5  56  15 
Datasheet   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
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 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