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T525T336M010AH40957280

产品描述Tantalum Capacitor, Polarized, Tantalum, 10V, 20% +Tol, 20% -Tol, 33uF, 1411,
产品类别无源元件    电容器   
文件大小263KB,共1页
制造商KEMET(基美)
官网地址http://www.kemet.com
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T525T336M010AH40957280概述

Tantalum Capacitor, Polarized, Tantalum, 10V, 20% +Tol, 20% -Tol, 33uF, 1411,

T525T336M010AH40957280规格参数

参数名称属性值
是否Rohs认证不符合
Objectid709132039
包装说明, 1411
Reach Compliance Codenot_compliant
ECCN代码EAR99
YTEOL7.5
电容33 µF
电容器类型TANTALUM CAPACITOR
介电材料TANTALUM (DRY/SOLID)
ESR80 mΩ
高度1.2 mm
JESD-609代码e0
长度3.5 mm
负容差20%
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TR, 13 Inch
极性POLARIZED
正容差20%
额定(直流)电压(URdc)10 V
系列T525-DSCC
尺寸代码1411
端子面层Tin/Lead (Sn90Pb10)
宽度2.8 mm

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KEMET Surface Mount Conductive Polymer - KO CAP
Revision I, 06 July 2010
Note:
Information subject to change without notice. Monitor website regularly for updates.
KEMET is not liable for any damages, direct or indirect, consequential or otherwise,
that the reader might incur as a result of ignoring this warning, or that any third party might suffer
as a result of the reader's ignoring this warning.
Characteristics and Typical Construction
Encapsulant
KEMET organic with polymer cathode
Termination code 'T' products support manufacture of
RoHS-compliant EEE
2
- 25 Volts
± 20% Capacitance tolerance
Tape & Reel Packaging
SnPb Termination available for T520 and T530 Series
Tantalum Element
Termination
Conductive Polymer
Graphite / Silver Counterelectrode
RoHS Restricted Substance Content
Key for Determining Adherence to China RoHS and EU 2002/95/EC and 2005/618/EC Content Criteria
1
O
= ≤ MCV,
X
= > MCV,
X
= > MCV, but EU RoHS Compliant with Exemption(s)
Restricted Material
Material and
MCV
1
KEMET Product
KO Cap
High Voltage KO Cap
High Temperature KO Cap
Face Down Termination KO Cap
Multiple Anode KO Cap
KO Cap
High Voltage KO Cap
High Temperature KO Cap
Multiple Anode KO Cap
Compliant Version
PBB
< 0.1%
PBDE
< 0.1%
Available
since
Standard
since
China RoHS
Symbol
2
Cd
< 0.01%
Cr
6+
< 0.1%
Pb
< 0.1%
Hg
< 0.1%
Series
T520
T521
T525
T528
T530
T520
T521
T525
T530
Termination
Code
T
O
O
O
O
O
O
Mar-00
n/a - Termination
unique for Pb-Free
H
O
O
1
2
X
O
O
O
MCV = Maximum Concentration Values per 2005/618/EC amending RoHS Directive 2002/95/EC and China RoHS criteria.
China RoHS Symbol based on current manufacturing. Refer to notes in Pb column for transition dates
Soldering Capability Characteristics
Matte Tin Termination
Termination Material
Termination Plating (Barrier)
Peak Temperature Capability
Soldering Process Compatibility
MSL Rating
Tin Whisker Test Results
indentindent
based on JESD22-A121 and JESD201
6
3
SnPb Termination
Copper
90Sn10Pb (Copper)
Copper
100% Matte Tin (Copper or Nickel)
T520, T521, T528, T530 = 260°C
3
T525 = 250°C
Backward & Forward Compatible
3
Class 2
T520, T521, T528, T530 = 260°C
4
T525 = 250°C
Backward & Forward Compatible
3
Class 2
T520, T530 V-case product 260°C capable since print week code (PWC) 501. All other T520, T530 sizes 260°C capable since PWC 524. Capability of product produced prior to these dates is 250°C. PWC
format is YWW (Y = 1 digit year, WW = 2 digit week, for example, 533 = 33rd week of 2005) and is printed on the component face. T528 series 260°C capable since release in April, 2006.
4
Per EIA/ECA component bulletin CB19, tin whiskering is not considered a reliability risk within the capacitor industry for non-Military / Hi-Rel applications.
Ordering
T 520 V 157 M
Tantalum
Series
T520 - Low ESR Polymer
Identification
006
A
T
E015
ESR
Lead Material
T = 100% Tin (Sn) Plated
H = Tin/Lead (SnPb, 5% Pb minimum)
Failure Rate Level
A = Not Applicable
Case Size
A, T, B, C, V, W, D, Y, X
Capacitance Picofarad Code
First two digits represents significant figures.
Third digit specifies number of zeros to follow.
Reel level
KEMET EZ ID
label indicates
product content relative to substance restrictions
of the EU RoHS Directive, 2002/95/EC, 2005/618/EC and
China RoHS..
RoHS-PRC
= Meets criteria without exemption
RoHS-EU
= Meets criteria with exemption
RoHS-NO
= Does not meet criteria
Voltage
Note: 006 = 6.3 volts
Capacitance Tolerence
M = ±20%

 
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