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T493B155M025CN6413

产品描述Tantalum Capacitor, Tantalum (dry/solid),
产品类别无源元件    电容器   
文件大小2MB,共25页
制造商KEMET(基美)
官网地址http://www.kemet.com
下载文档 详细参数 全文预览

T493B155M025CN6413概述

Tantalum Capacitor, Tantalum (dry/solid),

T493B155M025CN6413规格参数

参数名称属性值
是否Rohs认证不符合
Objectid7006460161
包装说明,
Reach Compliance Codecompliant
ECCN代码EAR99
电容器类型TANTALUM CAPACITOR
介电材料TANTALUM (DRY/SOLID)
JESD-609代码e3
制造商序列号T493
端子数量2
端子面层Tin (Sn)

T493B155M025CN6413文档预览

Tantalum Surface Mount Capacitors – High Reliability
T493 Series Commercial Off-The-Shelf (COTS)
MnO
2
(CWR11 Style)
Overview
The KEMET T493 Series is designed for the Commercial
Off-The-Shelf (COTS) requirements of military and aerospace
applications. This series is a surface mount product offering
various lead-frame plating options, Weibull grading options,
surge current testing, F-Tech (an improved anode manufacturing
process) and Simulated Breakdown Voltage (SBDV) screening
options to improve long term reliability. Standard, low, and
ultra-low ESR options are available. All lots of this series are
conditioned with MIL–PRF–55365 Group A testing. This series is
also approved for DSCC Drawing 07016 (please see part number
list specific to this drawing).
KEMET’s F-Tech eliminates hidden defects in the dielectric which
continue to grow in the field, causing capacitor failures. Based
on the fundamental understanding of degradation mechanisms
in tantalum and niobium capacitors, F-Tech incorporates multiple
process methodologies. Some minimize the oxygen and carbon
content in the anodes which become contaminants and can lead
to the crystallization of the anodic oxide dielectric. This process
methodology reduces the contaminants, improving quality of
the dielectric. An additional technology provides a stronger
mechanical connection point between the tantalum lead wire and
tantalum anode, enhancing robustness and product reliability. The
benefit of F-Tech is illustrated by a 2,000 hour, 85°C, 1.32 X rated
voltage accelerated life test. F-Tech parts see no degradation
while standard tantalums have 1.5 orders of magnitude
degradation in leakage current. F-Tech is currently available for
T493 Series (select D and X case capacitance values in 20 V and
higher rated voltage). Please contact KEMET for details on ordering
other part types with these capabilities.
KEMET’s patented Simulated Breakdown Screening (SBDS) is
a nondestructive testing technique that simulates the breakdown
voltage (BDV) of a capacitor without damage to its dielectric or to the
general population of capacitors. This screening identifies hidden
defects in the dielectric, providing the highest level of dielectric
testing. SBDS is based on the simulation of breakdown voltage
(BDV), the ultimate test of the dielectric in a capacitor.
Low BDV indicates defects in the dielectric, and therefore, a higher
probability of failure in the field. High BDV indicates a stronger
dielectric and high-reliability performance in the field.
This new screening method allows KEMET to identify the breakdown
voltage of each individual capacitor and provide only the strongest
capacitors from each lot.
SBDS is currently available on select part types in the T493 and
T497 Series. Please contact KEMET for details on ordering other
part types with these capabilities.
KEMET offers these technologies per the following options:
• F-Tech only
• SBDS only
• Combination of both F-Tech and SBDS for the ultimate protection
Click image above for interactive 3D content
Open PDF in Adobe Reader for full functionality
One world. One KEMET
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
T2007_T493 • 6/10/2014
1
Tantalum Surface Mount Capacitors – High Reliability
T493 Series Commercial Off-The-Shelf (COTS) MnO
2
(CWR11 Style)
Benefits
• F-Tech and Simulated Breakdown Voltage (SBDS) screening
options available
• Taped and reeled per EIA 481
• Symmetrical, compliant terminations
• Laser-marked case
• 100% surge current test available on all case sizes
• Termination options B, C, H, K, T, N & M
Weibull failure options B and C
Voltage rating of 4 – 63 VDC
Operating temperature range of -55˚C to +125˚C
Capacitance values of 0.1 μF to 470 μF
All parts tested per Group A of MIL–PRF–55365
Approved for DSCC Drawing 07016 applications
Applications
Typical applications include decoupling and filtering in military and aerospace applications.
Environmental Compliance
RoHS Compliant (6/6) according to Directive 2002/95/EC when ordered with 100% Sn solder.
SPICE
For a detailed analysis of specific part numbers, please visit www.kemet.com for a free download of KEMET's SPICE software.
The KEMET SPICE program is freeware intended to aid design engineers in analyzing the performance of these capacitors over
frequency, temperature, ripple, and DC bias conditions.
Ordering Information
T
Capacitor
Class
T=
Tantalum
493
Series
Military
COTS
D
Case
Size
A, B,
C, D,
E, X
227
Capacitance
Code (pF)
First two digits
represent
significant
figures. Third
digit specifies
number of zeros.
K
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
006
Voltage
004 = 4 V
006 = 6.3 V
010 = 10 V
016 = 16 V
020 = 20 V
025 = 25 V
035 = 35 V
050 = 50 V
063 = 63 V
C
Failure Rate/
Design
A = N/A
B = 0.1%/1,000
hours
C=
0.01%/1,000
hours
H
Lead Material
C = Hot Solder Dipped
H = Standard Solder
Coated (SnPb 5% Pb
minimum)
B = Gold Plated
K = Solder Fused
T = 100% Tin
N = Non-Magnetic 100%
Tin (Sn)
M = Non-Magnetic
(SnPb)
61
Surge
61 = None
62 = 10 Cycles
after Weibull, 25ºC
63 = 10 cycles after
Weibull, -55ºC and
85ºC after Weibull
64 = 10 cycles
before Weibull,-55°
and +85°C
20
ESR
10 = ESR -
Standard
20 = ESR -
Low
30 = ESR -
Ultra low
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
T2007_T493 • 6/10/2014
2
Tantalum Surface Mount Capacitors – High Reliability
T493 Series Commercial Off-The-Shelf (COTS) MnO
2
(CWR11 Style)
Ordering Information – DSCC 07016
07016-
Drawing Number
001
Dash Number
See Part Number
Reference
K
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
B
Reliability Grade
B = 0.1%/1,000 hours
C = 0.01%/1,000 hours
H
Lead Material
C = Hot Solder Dipped
H = Standard Solder Coated
(SnPb 5% Pb minimum)
B = Gold Plated
A
Surge
A = + 25ºC after Weibull
B = -55ºC and +85ºC after
Weibull
C = -55ºC and + 85ºC before
Weibull
Z or no option= No test required
Ordering Information – F-Tech +SBDS
T
Capacitor
Class
493
Series
D
226
K
020
Voltage
020 = 20V
025 = 25V
035 = 35V
050 = 50V
063 = 63V
C
Failure Rate/
Design
A = N/A
B = 0.1%/1,000
hours
C = 0.01%/1,000
hours
H
Lead Material
C = Hot Solder
Dipped
H = Standard Solder
Coated (SnPb 5%
Pb minimum)
B = Gold Plated K =
Solder Fused
K = Solder Fused
T = 100% Tin
N = Non-Magnetic
100% Tin (Sn)
M = Non-Magnetic
(SnPb)
61
Surge
61 = None
62 = 10 Cycles after
Weibull, 25ºC
63 = 10 cycles after
Weibull, -55ºC and
85ºC after Weibull
64 = 10 cycles
before Weibull,-55°
and +85°C
20
Screening + ESR
11 = F-Tech +
SBDS *
12 = SBDS
13 = F-Tech *
21 = Low ESR + 11
22= Low ESR + 12
23 = Low ESR + 13
31= Ultra Low ESR
+ 11
32 = Ultra Low ESR
+ 12
33 = Ultra Low ESR
+ 13
Case Capacitance Code Capacitance
Size
(pF)
Tolerance
First two digits
J = ±5%
represent
K = ±10%
significant
M = ±20%
figures. Third digit
specifies number
of zeros.
T=
Military A, B,
Tantalum COTS C, D,
E, X
* Select "C", "D" and "X" case sizes in 20V and higher rated voltage
Performance Characteristics
Item
Operating Temperature
Rated Capacitance Range
Capacitance Tolerance
Rated Voltage Range
DF (120 Hz)
ESR (100 kHz)
Leakage Current
-55°C to 125°C
0.1 – 330 μF @ 120 Hz/25°C
J Tolerance (5%), K Tolerance (10%), M Tolerance (20%)
4 – 63 V
Refer to Part Number Electrical Specification Table
Refer to Part Number Electrical Specification Table
≤ 0.01 CV (µA) at rated voltage after 5 minutes
Performance Characteristics
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
T2007_T493 • 6/10/2014
3
Tantalum Surface Mount Capacitors – High Reliability
T493 Series Commercial Off-The-Shelf (COTS) MnO
2
(CWR11 Style)
Qualification
Test
Endurance
Condition
Δ C/C
85°C @ rated voltage, 2,000 hours
125°C @ 2/3 rated voltage, 2,000 hours
DF
DCL
ESR
Δ C/C
DF
DCL
ESR
Δ C/C
MIL–STD–202, Method 107, Condition B, mounted,
-55°C to 125°C, 1,000 cycles
DF
DCL
ESR
Extreme temperature exposure at a
succession of continuous steps at +25°C,
-55°C, +25°C, +85°C, +125°C, +25°C
+25°C
Δ C/C
DF
DCL
IL*
IL
IL
Δ C/C
DF
DCL
ESR
Δ C/C
DF
DCL
Characteristics
Within ±10% of initial value
Within initial limits
Within 1.25 x initial limit
Within initial limits
Within ±10% of initial value
Within initial limits
Within 1.25 x initial limit
Within initial limits
Within ±5% of initial value
Within initial limits
Within 1.25 x initial limit
Within initial limits
-55°C
±10%
IL
n/a
+85°C
±10%
1.5 x IL
10 x IL
+125°C
±15%
1.5 x IL
12 x IL
Storage Life
125°C @ 0 volts, 2,000 hours
Thermal Shock
Temperature Stability
Within ±5% of initial value
Within initial limits
Within initial limits
Within initial limits
Within ±10% of initial value
Within initial limits
Within initial limits
Surge Voltage
25°C and 85°C, 1.32 x rated voltage 1,000 cycles
(125°C, 1.2 x rated voltage)
Mechanical Shock/Vibration
MIL–STD–202, Method 213, Condition I, 100 G peak
MIL–STD–202, Method 204, Condition D, 10 Hz to 2,000 Hz,
20 G peak
*IL = Initial limit
Certification
MIL–PRF–55365/8
DSCC Drawing 07016
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
T2007_T493 • 6/10/2014
4
Tantalum Surface Mount Capacitors – High Reliability
T493 Series Commercial Off-The-Shelf (COTS) MnO
2
(CWR11 Style)
Electrical Characteristics
ESR vs. Frequency
1000
100
Impedance, ESR (Ohms)
10
T493B106/020_IMP
T493E476/035_IMP
T493X226/035_IMP
T493B106/020_ESR
T493E476/035_ESR
T493X226/035_ESR
1
0.1
0.01
100
1,000
10,000
Frequency (Hz)
100,000
1,000,000
10,000,000
Capacitance vs. Frequency
100
Capacitance (µF)
10
1
T493B106/020
T493E476/035
T493X226/035
0.1
100
1,000
10,000
Frequency (Hz)
100,000
1,000,000
10,000,000
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
T2007_T493 • 6/10/2014
5

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