Suntan Have Four Type DIY Capacitors for Speaker Amplifier, Audio Capacitors Crossover, Record Players, CD Players

May 25, 2020 Views
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Suntan Technology Company Limited
--All kinds of Capacitors

Most audiophiles stand by grade logic on audio capacitors. Audio capacitors have Teflon, copper foil, silver foil, polypropylene/foil design, silver leads, oil, etc. I have heard dozens of capacitors, Ranging in price from just a few pennies to hundreds of dollars.
 
Suntan TS13AB/TS13AC/ TS13AF/TS13AG are an axial style capacitor with non-polarized (bi-polarized), made out of Aluminum Electrolytic.
TS13AB-105°C, 1000 hours, Low Dissipation Factor, MAX 5% at 1KHz - Audio System:
TS13AC-105°C, 1000 hours, Low Dissipation Factor, MAX 4% at 1KHz- Audio System:
TS13AF-105°C, 1000 hours, Low Dissipation Factor, MAX 10% at 120Hz - Audio System:
TS13AG-105°C, 1000 hours, Low Dissipation Factor, MAX 10% at 1KHz - Audio System:

http://suntan.com.hk/pdf/Aluminum-Electrolytic-Capacitors/TS13AG.pdf

Suntan Have Four Type DIY Capacitors for Speaker Amplifier, Audio Capacitors Crossover, Record Players, CD Players

Suntan Technology Company Limited---All kinds of Capacitors

February 11, 2020 Views
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Suntan Technology Company Limited

--All kinds of Capacitors

*TS08H 310VAC Metallized Polypropylene Film Capacitor X2*

We strongly promote our TS08H series for reference. Suntan is able to support competitive prices!!! We also got ENEC, UL/eUL , VDE approvals. Therefore, it can be widely used in across-the-line, interference suppression circuit such as LED strip lights, automatic gates, etc.

Datasheet: http://suntan.com.hk/pdf/Plastic-Film-Capacitors/TS08H.pdf

Capacitance Range: 0.0047uF – 10uF (need any specified capacitance? contact us directly)
Operating Temp: -40 to +105

For more details or information, please contact us at sales@suntan.com.hk / info@suntan.com.hk

Suntan X2 310VAC TS08H Lead Spacing 27.5mm VDE and UL Approval Items Table

September 27, 2017 Views
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Suntan Technology Company Limited
--- All Kinds of Capacitors

Suntan produces all kinds of capacitors and has excellent quality. Now, we release TS08H MPX/MKP Class X2 - MPX Safety Standard Capacitor lead spacing 27.5mm. The sizes in the form are certificated by VDE and UL. For pitch size 27.5mm, the biggest capacitance value we can do is 4.7uF. Dimension unit is mm

TS08H Class X2 Pitch Size 27.5mm

CAP

L±1.0

H±1.0

T±1.0

P±1.0

d ر0.05

0.47

31.5

19.5

10.8

27.5

0.8

0.56

31.5

19.5

10.8

27.5

0.8

0.68

31.5

19.5

10.8

27.5

0.8

0.82

31.5

19.5

10.8

27.5

0.8

1

31.5

19.5

10.8

27.5

0.8

1.2

31.5

21.6

13

27.5

0.8

1.5

31.5

21.6

13

27.5

0.8

1.8

31

25

14

27.5

0.8

2.2

30

25

14

27.5

0.8

2.7

32

28

18

27.5

0.8

3.3

32

28

18

27.5

0.8

4.7

32

37

22

27.5

0.8

Please hurry to contact us if you have selected the size of TS08H Suppression Film Capacitors Class X2 AC-High Stability Grade, we can provide the free samples to you for testing! More details please visit: 

http://www.suntan.com.hk/Plastic-Film-Capacitors/TS08H.html

Suntan X2 310VAC TS08H Lead Spacing 10mm VDE and UL Approval Items Table

September 20, 2017 Views
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Suntan Technology Company Limited
--- All Kinds of Capacitors

Suntan always supply high quality products to our clients, now we confidently recommend Suntan X2 310VAC TS08H MPX Safety Standard Capacitor to you, the sizes in the form have VDE and UL approval, the quality is quite reliable. Lead spacing 10mm is the conventional size, you can contact with us for the free sample. Dimension unit is mm

TS08H Class X2 Pitch Size 10mm

CAP

L±1.0

H±1.0

T±1.0

P±1.0

d ر0.05

0.0047

13

9

4

10

0.6

0.0056

13

9

4

10

0.6

0.0068

13

9

4

10

0.6

0.0082

13

9

4

10

0.6

0.01

13

9

4

10

0.6

0.01

13

11

5

10

0.6

0.012

13

9

4

10

0.6

0.012

13

11

5

10

0.6

0.015

13

9

4

10

0.6

0.015

13

11

5

10

0.6

0.018

13

9

4

10

0.6

0.018

13

11

5

10

0.6

0.022

13

9

4

10

0.6

0.022

13

11

5

10

0.6

0.027

13

9

4

10

0.6

0.027

13

11

5

10

0.6

0.033

13

11

5

10

0.6

0.039

13

11

5

10

0.6

0.047

13

11

5

10

0.6

0.056

13

12

6

10

0.6

0.068

13

12

6

10

0.6

0.082

13

12

6

10

0.6

0.1

13

12

6

10

0.6


Suntan can also customize other sizes of TS08H X2 Metallized Polypropylene Film Capacitors which is not in the form in 10 working days, welcome to consult with us!

Suntan Common Applications of TS08H EMI Suppression Capacitors (MKP) X2

September 19, 2017 Views
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Suntan Technology Company Limited
--- All Kinds of Capacitors

Suntan TS08H EMI Suppression Capacitors (MKP) X2 is widely used. I would like to briefly introduce the application of TS08H X2 Metallized Polypropylene Film Capacitor:

* Inter-line bypass, antenna coupling, inter-line jumper and spark cancellation loop Effective electromagnetic filter.
* Switching power supply and other circuits to suppress the instantaneous surge of the switch current.
* Business Machines: typewriters, computers, computer monitors and monitors
* Household electrical appliances: mixers, electric fans, coffee grinders, audio and television circuits.
* Gate fluid and controller device: dimmer.

Do you probably understand its function? Suntan provides the free samples to you, I hope you will be satisfied with TS08H Class X2 AC-Capacitor.

Suntan Freezing Price For TS08H X2 310VAC Safety Capacitor

September 4, 2017 Views
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Suntan Technology Company Limited
--- All Kinds of Capacitors

Good news! Because the production technology improved, Suntan has a freezing price for TS08H X2 310VAC Safety Capacitor, TS08H MPX Safety Standard Capacitor is a new generation compare favorably with TS08S and TS08V. In addition, it’s worth noting that the price of TS08H AC-Capacitor is better than them. 

Suntan will gradually phase out TS08S and TS08V in the future, we recommend you to try TS08H X2 Metallized Polypropylene Film Capacitor, Suntan provides the samples free of charge, it’s really an opportunity you can’t miss!  Later on, you can visit Suntan official website for more information.

Suntan Videos On YouTube

August 3, 2017 Views
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Suntan Technology Company Limited
--- All Kinds of Capacitors

For introducing Suntan product and brand better, we made some videos and submitted them to the YouTube, link as below. Enjoy and welcome to make comment if any.
https://www.youtube.com/channel/UC3-rU9GDIqN7rJOUYgH-GLA

Suntan TS02B Box Type Metallized Polyester Film Capacitor

June 21, 2017 Views
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Suntan Technology Company Limited
----All Kinds of Capacitors

Suntan TS02B Box Type Metallized Polyester Film Capacitor Here I would like to introduce our TS02B Box Type Metallized Polyester Film Capacitor to you. The feature of this series is high reliability, rated voltage is from 63V to 630V, capacitance is from 0.0033uF to 2.2uF, and three pitch size: 7.5mm, 10mm, 15mm can be optional. For more details, please check our datasheet: http://www.suntan.com.hk/pdf/Plastic-Film-Capacitors/TS02B.pdf

Welcome to check price with us sales@suntan.com.hk ! 

Suntan CBB21 Metallized Polypropylene Film Capacitor TS07

May 24, 2017 Views
Comments 0
Suntan Technology Company Limited
----All Kinds of Capacitors

Suntan provides two types of through hole film capators, they are Polypropylene type and Polyester type. 
Our best seller in Polypropylene type is MPP(CBB21) Metalized Polypropylene Film Capacitor (Coating), equal to Suntan TS07 seriours.

MPP(CBB21) is wildly used in Industrial Equipment, Lighting saving, Consumer Electronics,Automobile Electronic
Providing optimum performance with small size of in S-shaping correction of Colour TV set.
Our price for TS07 is much better than before.

More details, please check our datasheet at : 
http://www.suntan.com.hk/Plastic-Film-Capacitors/TS07.html

Su Suntan A Bad Capacitor Story Ends Happily

January 31, 2009 Views
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Suntan Technology Company Limited
---All kinds of Capacitors

I worked as a design engineer for an optical-telecom company that had deployed 1000 pieces of equipment worldwide. Having so many modules in the field means a trickle of returns, and it was my job to investigate the failures. One investigation taught me a wonderful lesson.

I received a module whose source of failure was easily identifiable: a charred tantalum capacitor. It failed short, making the whole multithousand-dollar module nonoperational. This surface-mount capacitor—with a 7343 footprint and 20V rating—was sitting on a 12V-dc plane. This failure rate of one capacitor in about 10,000 pieces in this time span was well below the statistical prediction. I took a picture of the fallen capacitor and considered the case closed.

In a few weeks, a customer returned a similar module with a charred and shorted capacitor in the same location. Even including this case, the failure rate was still below statistical prediction. I knew there were five more identical capacitors on the board, sitting in parallel on the same 12V-dc plane. In addition to the module's failure rate, I now had a one-in-six chance with the capacitors. So, I took another picture. I wrote a report to calm upper management, but I had a feeling that I'd better study reliability calculation in general and reliability for tantalum capacitors in particular, and the faster, the better.

In another few weeks, I received another failed module. The same capacitor looked bad. I had by now done my studying and could intimidate other people by saying long and complicated sentences about reliability, but why was it always the same capacitor? Overvoltage? Spikes? No way. The same plane contained plenty of sensitive stuff that would fry well before the capacitor even felt it. Having nothing better, I clung to the theory of excessive ripple current.

The idea of a temperature rise due to ripple current causing the failure gained traction when all three photos of the fallen capacitors revealed a common condition: almost no solder on each negative terminal. The electrical connection was still good, but there was little solder. The capacitor's positive terminal was fine with a fair amount of curvature-profiled solder. I started to promote the idea that the lack of solder had caused impeded thermal contact, but it was only wishful thinking. I calculated the worst ripple current: 10% of the maximum rating. On an operational board, I got less than 5%.

I had already dismissed other ideas—from excessive humidity to airflow turbulence. Suddenly, the picture of the layout popped up in my mind. The layout sections for the five good capacitors were identical: Vias were close to both terminals going down to an internal layer. The bad capacitor had a via at the positive terminal, but, at the negative end, there was a heavy trace going inside the footprint, beneath the capacitor, and only then outside. That's when I knew how to fit together all the pieces of the puzzle.

On the positive terminal, the solder stayed where it was supposed to, clinching the terminal to the PCB (printed-circuit board). On the negative side, however, during assembly, the melted solder drifted under the capacitor and solidified, lifting the negative end and bending the capacitor just enough to create a microcrack—a capacitor's well-known nemesis. I never felt as much excitement writing a technical report as I did the next day.

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