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– EE23 –

Design, Specifications are subject to change without notice.  Ask factory for technical specifications before purchase and/ or use.
Whenever a doubt about safety arises from this product, please inform us immediately for technical consulation without fail.

Aluminum Electrolytic Capacitor/FA

FA

A

Series:

Type  :

   -55  to   + 105

°

C

 6.3     to   63 V .DC

68  to  15000 µ F

±20 % (120Hz/+20

°

C)

 0.01 CV (µ A)  after 2 minutes application of rated working voltage at +20

°

C.

W.V.     6.3      10      16      25      35       50     63
tan 

δ

   0.22   0.19   0.16   0.14    0.12   0.10    0.08

(max.)

(120Hz /+20

°

C)

Impedance at -10

°

C, 100KHz 

<

200 % of initial specified value at 20

°

C,100kHz.

(Impedance ratio at 100kHz)

L

L

<

16:L+1.0 max

φ

0.05

14 min

 min

φ

D+0.5 max

φ

10

<

P

±

0.

5

φ

D+0.5 max

φ

8

>

P

±

0.

5

L

>

20:L+2.0 max

Body Dia. 

φ

D

Body Length  L

Lead Dia. 

φ

d

Lead space P

(mm)

0.6      0.6      0.6     0.8       0.8    0.8

3.5       5        5       5          7.5     7.5

8         10            12.5              16         18

 Frequency correction factor for ripple current

W

(V.DC)

60        120         1k       10k      100k

Frequency(Hz)

0.55      0.65       0.85      0.90       1.0

6.3  to  63

Cap.(µF)

      

6.8 to     330

  390      to   1000
1200      to   2200
2700      to 15000

0.75      0.80       0.90      0.95       1.0
0.80      0.85       0.95      1.00       1.0

0.70      0.75       0.90      0.95       1.0

E          E          U          F          A

<

 25

      

>

 30

Discontinued

Radial lead type

■ 

Features

Endurance :105

°

C 2000 to 5000h

Smaller than Series HFQ
Low impedance (20 to 40 less volume than
Series HFQ)

Specification

Operating Temp. Range

Rated W.V. range

Nominal cap. range

Capacitance tol.

DC leakage current

tan 

δ

Shelf life

±20% of  initial measured value

<

 200% of  initial specified value

<

 initial specified value

Capacitance change
 tan 

δ

DC leakage current

Explanation of Part Numbers

■ 

Dimensions in mm (not to scale)

Safety vent

Vinyl sleeve

R.W.V. code

N.Capacitance code

Characteristics
at Low Temperature

Endurance

After following life test with DC voltage and +105 ± 2

°

C ripple current value applied (The sum of

DC and ripple peak voltage shall not exceed the rated working voltage),the capacitors shall meet
the limits specified below.
Duration: 2000 hours (

φ

8), 3000 hours (

φ

10), 5000 hours (

φ

12.5 to 

φ

18) Post test requirements at

20

°

C.

After storage for 1000 hours at +105± 2

°

C with no voltage applied and then being stabilized at

 +20

°

C,capacitor shall meet the limits specified in “Enduramce”.

Product code

Series code

Option

Add 0.02 per 1000µF for products of 1000µF or more.

Summary of Contents for EE23

Page 1: ...o 15000 0 75 0 80 0 90 0 95 1 0 0 80 0 85 0 95 1 00 1 0 0 70 0 75 0 90 0 95 1 0 E E U F A 25 30 Discontinued Radial lead type Features Endurance 105 C 2000 to 5000h Smaller than Series HFQ Low impedance 20 to 40 less volume than Series HFQ Specification Operating Temp Range Rated W V range Nominal cap range Capacitance tol DC leakage current tan δ Shelf life 20 of initial measured value 200 of ini...

Page 2: ...0 3900 4700 5600L 3300S 3900S 5600 6800 8200 180 330L 470 330 390 560 680 1000L 560S 1000 1200 1500L 1800 2200L 1500 2200 2700 3300 3900L 2200S 2700S 3900 4700 5600 0 234 0 170 0 130 0 180 0 136 0 104 0 090 0 070 0 120 0 076 0 068 0 050 0 044 0 036 0 050 0 044 0 036 0 032 0 030 0 044 0 038 0 032 0 030 0 028 0 117 0 085 0 065 0 090 0 068 0 052 0 045 0 035 0 060 0 038 0 034 0 025 0 022 0 018 0 025 0...

Page 3: ...0 1200S 1500 1800 2200 0 468 0 310 0 240 0 324 0 238 0 180 0 164 0 120 0 200 0 116 0 100 0 080 0 068 0 060 0 096 0 068 0 056 0 050 0 046 0 080 0 058 0 050 0 046 0 040 8 8 8 10 10 10 10 10 12 5 12 5 12 5 12 5 12 5 12 5 16 16 16 16 16 18 18 18 18 18 11 5 15 20 12 5 16 20 25 30 15 20 25 30 35 40 20 25 31 5 35 5 40 20 25 31 5 35 5 40 0 234 0 155 0 120 0 162 0 119 0 090 0 082 0 060 0 100 0 058 0 050 0 ...

Page 4: ...and Life Expectancy 1 Expected life is affected by operating temperature Generally each 10 C reduction in temperature will double the expected life Use capacitors at the lowest p o s s i bl e t e mperature below the maximum guaranteed temperature 2 If operating conditions exceed the maximum guaranteed limit rapid eIectrical parameter deterioration will occur and irreversible damage will result Che...

Page 5: ...age applied Excessive ripple current Reverse voltage applied Severe charging discharging AC voltage applied Used for a high temperature Used for a long period of time Stress applied to leads Use of Halogenated solvent Use of adhesive Use of coating material Defect of oxide film Insufficient electrolyte Metal particles in capacitor Burr s on foil leads Leads improperly connected Mechanical stress L...

Page 6: ...l 1 Capacitors Connected in Parallel The circuit resistance can closely approximate the series resistance of the capacitor causing an imbalance of ripple current loads with in the capacitors Careful design of wiring methods can minimize the possibility of excessive ripple currents applied to a capacitor 2 Capacitors Connected in Series Normal DC leakage current differences among capacitors can cau...

Page 7: ...ene or xylene and then exposed to high temperatures Always consider safety when designing equipment and circuits Plan for worst case failure modes such as short circuits and open circuits which could occur during use 1 Provide protection circuits and protection devices to allow safe failure modes 2 Design redundant or secondary circuits where possible to assure continued operation in case of main ...

Page 8: ...Cleaner P3 375 Telpen Cleaner EC 7R Clean thru 750H Clean thru 750L Clean thru 710M Techno Cleaner 219 Techno Care FRW 17 Techno Care FRW 1 Techno Care FRV 1 IPA isopropyl alcohol The use of ozone depleting cleaning agents are not recommended in the interest of protecting the environment 2 Avoid using the following solvent groups unless specifically allowed for in the specification Halogenated cle...

Page 9: ...the pressure relief vent of the capacitor operates immediately turn off the equipment and disconnect from the power source This will minimize additional damage caused by the vaporizing electrolyte 2 Avoid contact with the escaping electrolyte gas which can exceed 100 C temperatures If electrolyte or gas enters the eye immediately flush the eye with large amounts of water If electrolyte or gas is i...

Page 10: ...l to prevent explosion due to internal pressure rise Capacitors should be incinerated at high temperatures to prevent the release of toxic gases such as chlorine from the polyvinyl chloride sleeve etc Dispose of as solid waste L o c a l l a w s m a y h a v e s p e c i f i c d i s p o s a l requirements which must be followed The application guidelines above are taken from Technical Report EIAJ RCR...

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