4 Volt Rating at +85°C (2.7 Volt Rating at +125°C)
T409A225(1)004(2)(3)(4)
CWR09C(3)225(1)(2)(5)
1.0
T409B475(1)004(2)(3)(4)
CWR09C(3)475(1)(2)(5)
1.0
T409C685(1)004(2)(3)(4)
CWR09C(3)685(1)(2)(5)
1.0
T409D106(1)004(2)(3)(4)
CWR09C(3)106(1)(2)(5)
1.0
T409E156(1)004(2)(3)(4)
CWR09C(3)156(1)(2)(5)
1.0
T409F336(1)004(2)(3)(4)
CWR09C(3)336(1)(2)(5)
2.0
T409G686(1)004(2)(3)(4)
CWR09C(3)686(1)(2)(5)
3.0
T409H107(1)004(2)(3)(4)
CWR09C(3)107(1)(2)(5)
4.0
6 Volt Rating at +85°C (4 Volt Rating at +125°C)
T409A155(1)006(2)(3)(4)
CWR09D(3)155(1)(2)(5)
1.0
T409B335(1)006(2)(3)(4)
CWR09D(3)335(1)(2)(5)
1.0
T409C475(1)006(2)(3)(4)
CWR09D(3)475(1)(2)(5)
1.0
T409D685(1)006(2)(3)(4)
CWR09D(3)685(1)(2)(5)
1.0
T409E106(1)006(2)(3)(4)
CWR09D(3)106(1)(2)(5)
1.0
T409F226(1)006(2)(3)(4)
CWR09D(3)226(1)(2)(5)
2.0
T409G476(1)006(2)(3)(4)
CWR09D(3)476(1)(2)(5)
3.0
T409H686(1)006(2)(3)(4)
CWR09D(3)686(1)(2)(5)
4.0
10 Volt Rating at +85°C (7 Volt Rating at +125°C)
T409A105(1)010(2)(3)(4)
CWR09F(3)105(1)(2)(5)
1.0
T409B225(1)010(2)(3)(4)
CWR09F(3)225(1)(2)(5)
1.0
T409C335(1)010(2)(3)(4)
CWR09F(3)335(1)(2)(5)
1.0
T409D475(1)010(2)(3)(4)
CWR09F(3)475(1)(2)(5)
1.0
T409E685(1)010(2)(3)(4)
CWR09F(3)685(1)(2)(5)
1.0
T409F156(1)010(2)(3)(4)
CWR09F(3)156(1)(2)(5)
2.0
T409G336(1)010(2)(3)(4)
CWR09F(3)336(1)(2)(5)
3.0
T409H476(1)010(2)(3)(4)
CWR09F(3)476(1)(2)(5)
5.0
15 Volt Rating at +85°C (10 Volt Rating at +125°C)
T409A684(1)015(2)(3)(4)
CWR09H(3)684(1)(2)(5)
1.0
T409B155(1)015(2)(3)(4)
CWR09H(3)155(1)(2)(5)
1.0
T409C225(1)015(2)(3)(4)
CWR09H(3)225(1)(2)(5)
1.0
T409D335(1)015(2)(3)(4)
CWR09H(3)335(1)(2)(5)
1.0
T409E475(1)015(2)(3)(4)
CWR09H(3)475(1)(2)(5)
1.0
T409F106(1)015(2)(3)(4)
CWR09H(3)106(1)(2)(5)
2.0
T409G226(1)015(2)(3)(4)
CWR09H(3)226(1)(2)(5)
4.0
T409H336(1)015(2)(3)(4)
CWR09H(3)336(1)(2)(5)
5.0
20 Volt Rating at +85°C (13 Volt Rating at +125°C)
T409A474(1)020(2)(3)(4)
CWR09J(3)474(1)(2)(5)
1.0
T409B684(1)020(2)(3)(4)
CWR09J(3)684(1)(2)(5)
1.0
T409B105(1)020(2)(3)(4)
CWR09J(3)105(1)(2)(5)
1.0
T409C155(1)020(2)(3)(4)
CWR09J(3)155(1)(2)(5)
1.0
T409D225(1)020(2)(3)(4)
CWR09J(3)225(1)(2)(5)
1.0
T409E335(1)020(2)(3)(4)
CWR09J(3)335(1)(2)(5)
1.0
T409F685(1)020(2)(3)(4)
CWR09J(3)685(1)(2)(5)
2.0
T409G156(1)020(2)(3)(4)
CWR09J(3)156(1)(2)(5)
3.0
T409H226(1)020(2)(3)(4)
CWR09J(3)226(1)(2)(5)
4.0
25 Volt Rating at +85°C (17 Volt Rating at +125°C)
T409A334(1)025(2)(3)(4)
CWR09K(3)334(1)(2)(5)
1.0
T409B684(1)025(2)(3)(4)
CWR09K(3)684(1)(2)(5)
1.0
T409C105(1)025(2)(3)(4)
CWR09K(3)105(1)(2)(5)
1.0
T409D155(1)025(2)(3)(4)
CWR09K(3)155(1)(2)(5)
1.0
T409E225(1)025(2)(3)(4)
CWR09K(3)225(1)(2)(5)
1.0
T409F475(1)025(2)(3)(4)
CWR09K(3)475(1)(2)(5)
2.0
T409G685(1)025(2)(3)(4)
CWR09K(3)685(1)(2)(5)
2.0
T409G106(1)025(2)(3)(4)
CWR09K(3)106(1)(2)(5)
3.0
T409H156(1)025(2)(3)(4)
CWR09K(3)156(1)(2)(5)
4.0
35 Volt Rating at +85°C (23 Volt Rating at +125°C)
T409A224(1)035(2)(3)(4)
CWR09M(3)224(1)(2)(5)
1.0
T409B474(1)035(2)(3)(4)
CWR09M(3)474(1)(2)(5)
1.0
T409C684(1)035(2)(3)(4)
CWR09M(3)684(1)(2)(5)
1.0
T409D105(1)035(2)(3)(4)
CWR09M(3)105(1)(2)(5)
1.0
T409E155(1)035(2)(3)(4)
CWR09M(3)155(1)(2)(5)
1.0
T409F335(1)035(2)(3)(4)
CWR09M(3)335(1)(2)(5)
1.0
T409G475(1)035(2)(3)(4)
CWR09M(3)475(1)(2)(5)
2.0
T409H685(1)035(2)(3)(4)
CWR09M(3)685(1)(2)(5)
3.0
KEMET
Part Number
Mil-C-55365/4F
Part Number
DF %
@ +25ºC
120 Hz
Max
6.0
6.0
6.0
8.0
8.0
8.0
10.0
10.0
6.0
6.0
6.0
6.0
8.0
8.0
10.0
10.0
6.0
6.0
6.0
6.0
6.0
8.0
10.0
10.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
8.0
8.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
ESR
Ω
@ +25°C
100 kHz
Max
8.0
8.0
5.5
4.0
3.5
2.2
1.1
0.9
8.0
8.0
5.5
4.5
3.5
2.2
1.1
0.9
10.0
8.0
5.5
4.5
3.5
2.5
1.1
0.9
12.0
8.0
5.5
5.0
4.0
2.5
1.1
0.9
14.0
10.0
12.0
6.0
5.0
4.0
2.4
1.1
0.9
15.0
7.5
6.5
6.5
3.5
2.5
1.2
1.4
1.0
18.0
10.0
8.0
6.5
4.5
2.5
1.5
1.3
A
B
C
D
E
F
G
H
A
B
C
D
E
F
G
H
A
B
C
D
E
F
G
H
A
B
C
D
E
F
G
H
A
B
B
C
D
E
F
G
H
A
B
C
D
E
F
G
G
H
A
B
C
D
E
F
G
H
(
1) To complete KEMET/CWR part number, insert K = ±10%; M = ±20% and J = ±5% Capacitance tolerance.
(2) To complete KEMET/CWR part number, insert A = Non-ER; Weibull: B = 0.1%/1000 Hrs.; C = 0.01%/1000 Hrs or D = 0.001%/1000 Hrs. or
Exponential: M = 1.0%/1000 hrs., P = 0.1%/1000 hrs., R = 0.01%/1000 hrs. or S = 0.001%/1000 hrs. Reliability Level.
(3) To complete KEMET part number, insert B = Gold plated; C = Hot solder dipped; H = Solder plated or K = Solder Fused Termination Finish.
(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; or C = -55, & +85°C before Weibull Surge Current Option.
Experts please take a look at the problem with my program.1Sendvoid main (void){ uint i;WDTCTL = WDTPW + WDTHOLD;BCSCTL1&=~XT2OFF; //XT2 ON ,LFXT1 work at low frequency (32.768kHz)BCSCTL2=0x88 ;// 100...
1. Warning 280:'i':unreferenced local variable Explanation: The local variable i is not accessed in any way in the function. Solution: Eliminate the declaration of variable i in the function. 2 Warnin...
The rapid development of embedded technology has led to a surge in the demand for talents in this field. How to quickly master this technology is a problem faced by many people. Because it involves a ...
Did you know? Shenzhen has become the "world's first 5G city"!Shenzhen Mayor Chen Rugui announced at the "Light Up Shenzhen, 5G Smart City" press conference that Shenzhen has taken the lead in the cou...
The most significant feature of IPS panels is that both electrodes are located on the same surface, unlike other LCD panels, which have electrodes arranged on top and bottom surfaces in a three-dim...[Details]
Logic analyzers are widely used tools in digital design verification and debugging. They can verify the proper functioning of digital circuits and help users identify and troubleshoot faults. They ...[Details]
Reflow soldering is one of the most commonly used methods in electronics manufacturing, allowing for the soldering of large numbers of components in a relatively short time. However, any experience...[Details]
"We have successfully launched the first version of our dedicated chip for EMB brake-by-wire. Second-generation samples have also been successfully completed, and we are actively planning a third-g...[Details]
The difference between a series inverter and a parallel inverter is that they use different oscillation circuits. A series inverter connects L, R, and C in series, while a parallel inverter connect...[Details]
Previously, Positive Motion Technology shared with you the firmware upgrade of motion controller, ZBasic program development, ZPLC program development, communication with touch screen and input/out...[Details]
introduction
In recent years, multi-touch has emerged as a new alternative to traditional human-computer interaction. It eliminates the need for keyboards and mice, enabling simultaneous inter...[Details]
Wearable technology is taking off, with applications evolving rapidly, from smartwatches to fitness trackers and even smart wigs! Bluetooth Smart is at the center of this revolution. This is the se...[Details]
"I want to ask why there are so many manufacturers making mobile phone CPUs, but only Intel and AMD make computer CPUs?"
The progress of domestic PC CPU production has disappointed many ...[Details]
1. Introduction
In 2015, Apple's new MacBook and Apple Watch both featured force-sensing technology, which Apple calls Force Touch. Each time a user presses the touchpad, the device not only p...[Details]
Facial recognition, a biometric technology that uses facial features to authenticate identity, has rapidly become a global market hotspot in recent years as the technology has entered practical use...[Details]
On August 20, Huawei Device announced that the all-new M7 is the first to feature an in-cabin laser vision solution. This solution offers enhanced active safety capabilities compared to primary vis...[Details]
Compiled from semiengineering
The industry is increasingly concerned about power consumption in AI, but there are no simple solutions. This requires a deep understanding of software and ...[Details]
Blackfin® 16-/32-bit embedded processors offer high performance, low power consumption, flexible software features, and scalability, making them suitable for converged applications such as multi-fo...[Details]