15 Volt Rating at +85°C (10 Volt Rating at +125°C)
T492A684(1)015(2)(3)(4)
CWR11H(6)684(1)(2)(5)
0.5
4.0
12.0
T492A105(1)015(2)(3)(4)
CWR11H(6)105(1)(2)(5)
0.5
4.0
10.0
T492A155(1)015(2)(3)(4)
CWR11H(6)155(1)(2)(5)
0.5
6.0
8.0
T492B225(1)015(2)(3)(4)
CWR11H(6)225(1)(2)(5)
0.5
6.0
5.5
T492B335(1)015(2)(3)(4)
CWR11H(6)335(1)(2)(5)
0.5
6.0
5.0
T492B475(1)015(2)(3)(4)
CWR11H(6)475(1)(2)(5)
0.7
6.0
4.0
T492C106(1)015(2)(3)(4)
CWR11H(6)106(1)(2)(5)
1.6
6.0
2.5
T492D226(1)015(2)(3)(4)
CWR11H(6)226(1)(2)(5)
3.3
6.0
1.1
20 Volt Rating at +85°C (13 Volt Rating at +125°C)
T492A474(1)020(2)(3)(4)
CWR11J(6)474(1)(2)(5)
0.5
4.0
14.0
T492A684(1)020(2)(3)(4)
CWR11J(6)684(1)(2)(5)
0.5
4.0
12.0
T492A105(1)020(2)(3)(4)
CWR11J(6)105(1)(2)(5)
0.5
4.0
10.0
T492B155(1)020(2)(3)(4)
CWR11J(6)155(1)(2)(5)
0.5
6.0
6.0
T492B225(1)020(2)(3)(4)
CWR11J(6)225(1)(2)(5)
0.5
6.0
5.0
T492B335(1)020(2)(3)(4)
CWR11J(6)335(1)(2)(5)
0.7
6.0
4.0
T492C475(1)020(2)(3)(4)
CWR11J(6)475(1)(2)(5)
1.0
6.0
3.0
T492C685(1)020(2)(3)(4)
CWR11J(6)685(1)(2)(5)
1.4
6.0
2.4
T492D156(1)020(2)(3)(4)
CWR11J(6)156(1)(2)(5)
3.0
6.0
1.1
25 Volt Rating at +85°C (17 Volt Rating at +125°C)
T492A334(1)025(2)(3)(4)
CWR11K(6)334(1)(2)(5)
0.5
4.0
15.0
T492A474(1)025(2)(3)(4)
CWR11K(6)474(1)(2)(5)
0.5
4.0
14.0
T492B684(1)025(2)(3)(4)
CWR11K(6)684(1)(2)(5)
0.5
4.0
7.5
T492B105(1)025(2)(3)(4)
CWR11K(6)105(1)(2)(5)
0.5
4.0
6.5
T492B155(1)025(2)(3)(4)
CWR11K(6)155(1)(2)(5)
0.5
6.0
6.5
T492C225(1)025(2)(3)(4)
CWR11K(6)225(1)(2)(5)
0.6
6.0
3.5
T492C335(1)025(2)(3)(4)
CWR11K(6)335(1)(2)(5)
0.9
6.0
3.5
T492C475(1)025(2)(3)(4)
CWR11K(6)475(1)(2)(5)
1.2
6.0
2.5
T492D685(1)025(2)(3)(4)
CWR11K(6)685(1)(2)(5)
1.7
6.0
1.4
T492D106(1)025(2)(3)(4)
CWR11K(6)106(1)(2)(5)
2.5
6.0
1.2
35 Volt Rating at +85°C (23 Volt Rating at +125°C)
T492A104(1)035(2)(3)(4)
CWR11M(6)104(1)(2)(5)
0.5
4.0
24.0
T492A154(1)035(2)(3)(4)
CWR11M(6)154(1)(2)(5)
0.5
4.0
21.0
T492A224(1)035(2)(3)(4)
CWR11M(6)224(1)(2)(5)
0.5
4.0
18.0
T492A334(1)035(2)(3)(4)
CWR11M(6)334(1)(2)(5)
0.5
4.0
15.0
T492B474(1)035(2)(3)(4)
CWR11M(6)474(1)(2)(5)
0.5
4.0
10.0
T492B684(1)035(2)(3)(4)
CWR11M(6)684(1)(2)(5)
0.5
4.0
8.0
T492B105(1)035(2)(3)(4)
CWR11M(6)105(1)(2)(5)
0.5
4.0
6.5
T492C155(1)035(2)(3)(4)
CWR11M(6)155(1)(2)(5)
0.5
6.0
4.5
T492C225(1)035(2)(3)(4)
CWR11M(6)225(1)(2)(5)
0.8
6.0
3.5
T492C335(1)035(2)(3)(4)
CWR11M(6)335(1)(2)(5)
1.2
6.0
2.5
T492D475(1)035(2)(3)(4)
CWR11M(6)475(1)(2)(5)
1.7
6.0
1.5
1.5
A
2.2
A
3.3
A
4.7
B
Capaci-
Case
6.8
B
tance
Size
10.0
B
μF
15.0
C
22.0
C
47.0
D
1.0
1.5
2.2
3.3
4.7
6.8
15.0
33.0
0.7
1.0
1.5
2.2
3.3
4.7
10.0
22.0
0.5
0.7
1.0
1.5
2.2
3.3
4.7
6.8
15.0
0.3
0.5
0.7
1.0
1.5
2.2
3.3
4.7
6.8
10.0
0.1
0.2
0.2
0.3
0.5
0.7
1.0
1.5
2.2
3.3
4.7
A
A
A
B
B
B
C
D
A
A
A
B
B
B
C
D
A
A
A
B
B
B
C
C
D
A
A
B
B
B
C
C
C
D
D
A
A
A
A
B
B
B
C
C
C
D
PACKAGING
Note: T492 Packaging
• No c-spec required for 7” reel packaging
• C-7280 required for 13” reel packaging
• Standard reel packaging is not mandatory
• Bulk packaging also available using C-7610
See page 91 for tape and reel quantities.
CONSTRUCTION
Negative
Termination*
Molded
Case
Silver Adhesive
Washer
Polarity
Stripe (+)
Polarity
Bevel (+)
Tantalum
Wire
Tantalum
(Ta
2
O
5
)
Weld
Mn0
2
Coat
(First Layer)
(Second Layer)
Carbon
Silver Paint
(Third Layer)
Positive
Termination
CAPACITOR MARKINGS
T492 Series — All Case Sizes
Jan
Brand
Rated
Voltage
J
156
20
K
513
Print Week Code:
1st Digit = Year
2nd & 3rd Digits = Week
Sn/Pb (5% Pb
Polarity
minimum)
Indicator (+)
Picofarad
Code
KEMET
I. D. Symbol
"513" =
The 13th week of 2005
(1) To complete KEMET/CWR part number, insert M for ±20%, K for ±10% or J for ±5% tolerance.
(2) To complete KEMET/CWR part number, insert Failure Rate Symbol Weibull: B (0.1%/1000 Hrs.), C (0.01%/1000Hrs or D (0.001%/1000 Hrs.),
Exponential: M (1.0%/1000 hrs.), P (0.1%/1000 hrs.), R (0.01%/1000 hrs.) or S (0.001%/1000 hrs.)
(3) To complete KEMET part number, insert Termination Finish Designation B = Gold; C = Hot Solder Dipped; S = Solder Plated; K = Solder Fused.
(4) To complete KEMET part number, insert 4250 = +25°C after Weibull; 4251 = -55° + 85°C after Weibull; or 4252 = -55, & +85°C before Weibull Surge Current Option.
(5) To complete CWR part number, insert A = +25°C after Weibull; B = -55° + 85°C after Weibull; C = -55°, & + 85°C before Weibull or Z = None for Surge Current Option.
(6) To complete CWR part numbers, insert B = Gold; C = Hot Solder Dipped; H or S = Solder Plated; K = Solder Fused
1、引言 汽车污染是当前人们最为关心和急需解决的重要课题之一。作为汽车排气污染物的检测的重要方法,简易瞬态工况法(VMAS法,IG法)可以统计排放总质量,监控车辆的真实排放情况,设备成本不高,测量比较准确,与新车认证检测结果具有相关性,可以检测NO相关因子等一系列优点,成为人们研究的热点。VMAS(Vehicle Mass Analysis System)检测方法在美国和欧洲都有很好的应用基础,...[详细]
便携式数字数据采集系统(PDDAS)使用了LabVIEW实时模块和PXI,以控制风洞测试和采集记录来自128个不同通道的空气压力数据 "通过LabVIEW实时模块,可以在各种操作情况下获得采集空气压力数据及向风洞提供反馈控制信号所需的确定性响应时间。" – Dave Scheibenhoffer, G Systems 挑战: 用一个可采集、分析和存储来自下一代喷气式战斗机引擎设计的动...[详细]