Es3m

Short description:

Aluminium electrolytic capacitor

Typus Terminatio Type

Idoneam DC Welding machinis. Inverter Welding apparatus compatible products LXXXV ℃, MMM horis praestare. Altum Rippele. Foedus Rohs Directive Compliant Products.


Product Detail

Index products numerus

Product Tags

Main Technical parametri

Technica modularis

♦ LXXXV ℃ MMM horis

♦ disposito in potentia copia, inverter, medium frequency fornacem

♦ WELDING Machina, DC Welder

♦ High Ripple Current, Parvus Size

♦ Rohs obsequium

Specificatio

PRAECIPUUS

Characteres

Temperatus range ()

-40 (-25) ℃ + LXXXV ℃

Voltage range (v)

CC ~ 500V.DC

Capacitance range (UF)

M ~39000uf (XX ℃ 120Hz)

Capacitance tolerantia

土 XX%

Leakage Current (MA)

≤1.5ma aut 0.01 V minuta test ad XX ℃

Maximum DF (XX)

0,18 (XX ℃, 120hz)

Temperature characteres (120hz)

200-450 C (-25 ℃) / C (+ XX ℃) ≥0.7; D c (-40 ℃) / C (+ XX ℃) ≥0,6

Insulating resistentia

Valorem metiri applicando DC 500V Nulla resistentia tegra inter omnes terminals et disrumpam anulus cum insulating sleeve = 100mω.

Insulating voltage

Applicare n 2000v inter omnes terminals et disrumpam anulus cum insulating sleeve ad I minute et non deprauationem videtur.

Patientia

Applicare Rated Rapple Current in Capacitor cum voltage non plus quam rated voltage sub LXXXV ℃ environment et applicare rated voltage ad 3000hours, tunc recuperandam ad XX ℃ environment et test results ut satisfacere ad XX ℃ et in test results ut satisfacere.

Capacitance Mutare Rate (△ c)

≤initial valorem 土 XX%

DF (TGδ)

≤200% of initial specificationem pretii

Leakage Current (LC)

≤initial specie valorem

PLUTEUM vitae

Capacitori tenentur in LXXXV ℃ environment FBR M horas, tunc probata in XX ℃ environment et test exigere debere satisfaciunt ut infra.

Capacitance Mutare Rate (△ c)

≤initial valorem 土 XX%

DF (TGδ)

≤200% of initial specificationem pretii

Leakage Current (LC)

≤initial specie valorem

(Voltage Pretreatment debet fieri ante test: Applicare rated voltage in utroque terminos Capacitor per a resister de 1000Ω pro I hrs, deinde emundare electricity per 1Ω / Temperature FBD 24hrs post totalis, tunc incipit test.)

Product Dimensional Drawing

Dimensionem (Unit: mm)

D (mm)

51

64

77

90

CI

P (mm)

22

28.3

32

32

41

Screw

M5

M5

M5

M6

M8

Terminatio diameter (mm)

13

13

13

17

17

Torque (NM)

2.2

2.2

2.2

3.5

7.5

Diameter (mm)

A (mm)

B (mm)

A (mm)

b (mm)

h (mm)

51

31.8

36,5

7

4.5

14

64

38,1

42.5

7

4.5

14

77

44,5

49.2

7

4.5

14

90

50.8

55.6

7

4.5

14

CI

56.5

63.4

7

4.5

14

 

Ripple Current disciplinam parametri

Frequency corripiat coefficiens rated laclia current

Frequency (HZ)

50Hz

120Hz

300Hz

1KHz

≥010khz

Coefficient

0,7

1

1.1

1.3

1.4

Temperature corripiat coefficiens rated laclia current

Temperature (℃)

XL ℃

LX ℃

LXXXV ℃

Coefficient

1.89

1.67

1

 

TRISPICIUM TERMINAL Capacitors: Versatile components ad electrica systems

Clorice Terminal Capacitors sunt essentiales components in electrica systems, providente capacitance et industria repono capabilities in amplis applications. In hoc articulus, nos explorandum features, applications, et commoda stupra terminatio capacitors.

Features

Clospicium Terminal Capacitors, ut nomen suggerit, sunt capacitors instructi cochlea terminales ad facilis et secure electrica hospites. Hae capacitors typice cylindrici vel rectangula figuras, cum uno vel paria terminales ad nexu ad circuitu. Terminals sunt plerumque ex metallum, providing certa et durabile nexu.

Unus ex key features cochlea terminales capacitors est princeps capacitance values, quae range ex microfarads ad faeds. Hoc apta applications requiring magna copia crimen repono. Praeterea, stupra Terminal Capacitors sunt available in variis voltage ratings ad accommodare diversis voltage campester in electrica systems.

Applications

Clorogia Terminal Capacitors Find applications in amplis industries et electrica systems. Sunt communiter in potestate copiam unitates, motor potestate circuits, frequency converters, ups (Uninterruptible potestate copia) systems, et industriae automation apparatu.

In potestate copiam unitates, screw terminatio capacitors sunt saepe usus est percoquatur et voltage ordinacione proposita, auxilium lenis de voltage fluctuations et amplio altiore ratio stabilitatem. In motricium imperium circuits, haec capacitores adiuvaret in incipiens et currit inductione motoribus per providing opus phase subcinctus et reactive potestas ultricies.

Sed et screw Terminal Capacitors ludere a crucial partes in frequency converters et ups systems, ubi auxilio ponere firmum intentione et vena campester in potentia fluctuations et outages. In industriae automation apparatu, haec capacitores conferre ad efficientem operationem in potestate systems et machinery per providing industria repono et potentia elementum disciplinam.

Commoda

Clorice Terminal Capacitors offer aliquot commoda, quae faciat maluit electiones in multis applications. Eorum screw terminals facilitate facilis et secure hospites, ensuring reliable perficientur etiam in postulantes ambitum. Praeterea, eorum princeps capacitance values ​​et voltage ratings patitur pro agentibus industria repono et virtute condiciones.

Ceterum screw Terminatio capacitors sunt disposito ad sustinere altum temperaturis, vibrationes et electrica passiones, faciens ea idoneam usum in dura industriae environments. Construction et longa muneris vitae conferre ad altiore reliability et dilatabilitatem electrica systems.

Conclusio

In conclusione, stupra Terminal Capacitors sunt versatile components quod ludere vitalis roles in variis electrica systems et applications. Cum eorum princeps capacitance values, voltage ratings et robust constructione, quod providere efficientis industria repono, voltage ordinacione, et virtute condiciones solutions. Utrum in potestate copiam unitates, motor imperium circuits, frequency converters, aut industriae automation apparatu, stupra terminatio capacitors offerre reliable perficientur et contribuere ad lenis operationem electrica systems.


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  • Products Number Operating temperatus (℃) Voltage (V.DC) Capacitance (UF) Diameter (mm) Longitudo (mm) Leakage Current (UA) Rated Ripple Current [MA / RMS] ESR / Impedance [ωmage] Vita (HRS)
    Es3m2d472ancg02m5 -25 ~ LXXXV CC (IV) DCC 51 75 MMCMIX (VII) DCLXXX 0.024 MMM MMM
    Es3m2d562ancg03m5 -25 ~ LXXXV CC (V) DC 51 80 MMMCLXXV (IX) CXX 0.021 MMM MMM
    Es3m2d682ancg06m5 -25 ~ LXXXV CC (VI) DCCC 51 90 MMMCDXCIX (X) DLX 0.019 MMM MMM
    Es3m2d822anndg02m5 -25 ~ LXXXV CC (VIII) CC 64 75 MMMDCCCXLII (X) CCCLXXX 0,016 MMM MMM
    Es3M2D822ANNC14M5 -25 ~ LXXXV CC (VIII) CC 51 CXXX MMMDCCCXLII (XI) CCLXXX 0,016 MMM MMM
    Es3m2d103anndg04m5 -25 ~ LXXXV CC (X) 64 85 (IV) CCXLIII (XII) CDLXXX 0.014 MMM MMM
    Es3m2d103ancg18m5 -25 ~ LXXXV CC (X) 51 CL (IV) CCXLIII (XI) DCXL 0.014 MMM MMM
    Es3m2d123anneg03m5 -25 ~ LXXXV CC (XII) 77 80 (IV) DCXLVIII (XIV) CDXX 0.013 MMM MMM
    Es3m2d123anndg11m5 -25 ~ LXXXV CC (XII) 64 CXV (IV) DCXLVIII (XIV) DXX 0.013 MMM MMM
    Es3m2d153anneg06m5 -25 ~ LXXXV CC (XV) 77 90 (V) CXCVI (XVI) CMXC 0.012 MMM MMM
    Es3m2d153anndg12m5 -25 ~ LXXXV CC (XV) 64 CXX (V) CXCVI (XVII) CCLXXX 0.012 MMM MMM
    Es3m2d183anneg09m5 -25 ~ LXXXV CC (XVIII) 77 CV (V) DCXCII (XIX) DLXX 0.011 MMM MMM
    Es3m2d183anndg13m5 -25 ~ LXXXV CC (XVIII) 64 CXXV (V) DCXCII (XIX) DCCC 0.011 MMM MMM
    Es3m2d222annfg06m6 -25 ~ LXXXV CC MMCC 90 90 MCMXC (XXII) DCLX 0.01 0.01 MMM MMM
    Es3m2d222ang12m5 -25 ~ LXXXV CC MMCC 77 CXX MCMXC (XXIII) DXX 0.009 MMM MMM
    Es3m2d273annfg09m6 -25 ~ LXXXV CC (XXVII) 90 CV (VI) CMLXXI (XXVI) DCCLXX 0.008 MMM MMM
    Es3m2d273anneg16m5 -25 ~ LXXXV CC (XXVII) 77 CXL (VI) CMLXXI (XXV) DCCC 0.008 MMM MMM
    Es3m2d333annfg12m6 -25 ~ LXXXV CC (XXXIII) 90 CXX (VII) DCCVII (XXIX) DCCCLX 0.007 MMM MMM
    Es3m2d333anneg2m5 -25 ~ LXXXV CC (XXXIII) 77 75 (VII) DCCVII (XXX) CCCLX 0.007 MMM MMM
    Es3m2d393annfg16m6 -25 ~ LXXXV CC (XXIX) 90 CXL (VIII) CCCLXXIX (XXXIV) CCLX 0.006 MMM MMM
    Es3m2d393anneg26m5 -25 ~ LXXXV CC (XXIX) 77 CLXXXV (VIII) CCCLXXIX (XXXIV) DCCC 0.006 MMM MMM
    Es3m2e332ancg03m5 -25 ~ LXXXV CCL MMMCCC 51 80 MMDCCXXV (VI) DCCCXL 0.028 MMM MMM
    Es3m2e392ancg03m5 -25 ~ LXXXV CCL MMMCM 51 80 MMCMLXII (VII) DLX 0.023 MMM MMM
    Es3m2e472ancg06m5 -25 ~ LXXXV CCL (IV) DCC 51 90 MMMCCLII (VIII) DXX 0.022 MMM MMM
    Es3m2e562anndg02m5 -25 ~ LXXXV CCL (V) DC 64 75 MMMDL (IX) XC 0.019 MMM MMM
    Es3m2e562ancg11m5 -25 ~ LXXXV CCL (V) DC 51 CXV MMMDL (IX) CCCLX 0.019 MMM MMM
    Es3m2e682anndg04m5 -25 ~ LXXXV CCL (VI) DCCC 64 85 MMMCMXII (X) CMXX 0,016 MMM MMM
    Es3m2e682ancg18m5 -25 ~ LXXXV CCL (VI) DCCC 51 CL MMMCMXII (XI) DCC 0.015 MMM MMM
    Es3m2e822ang03m5 -25 ~ LXXXV CCL (VIII) CC 77 80 (IV) CCXCV (XI) CMXX 0.014 MMM MMM
    Es3m2e822anndg07m5 -25 ~ LXXXV CCL (VIII) CC 64 96 (IV) CCXCV (XII) 0.014 MMM MMM
    Es3m2e103anneg06m5 -25 ~ LXXXV CCL (X) 77 90 (IV) DCCXLIII (XIV) XL 0.013 MMM MMM
    Es3m2e103anndg10m5 -25 ~ LXXXV CCL (X) 64 CX (IV) DCCXLIII (XIV) XL 0.013 MMM MMM
    Es3m2e123anneg08m5 -25 ~ LXXXV CCL (XII) 77 C (V) CXCVI (XV) DCLX 0.012 MMM MMM
    Es3m2e123anndg13m5 -25 ~ LXXXV CCL (XII) 64 CXXV (V) CXCVI (XV) CDLXXX 0.012 MMM MMM
    Es3m2e153anneg11m5 -25 ~ LXXXV CCL (XV) 77 CXV (V) DCCCIX (XVIII) CXX 0.011 MMM MMM
    Es3m2e153anndg17m5 -25 ~ LXXXV CCL (XV) 64 CXLV (V) DCCCIX (XVIII) CCCLXX 0.011 MMM MMM
    Es3m2e183annfg08m6 -25 ~ LXXXV CCL (XVIII) 90 C (VI) CCCLXIV (XXII) XL 0.01 0.01 MMM MMM
    Es3m2e183anneg14m5 -25 ~ LXXXV CCL (XVIII) 77 CXXX (VI) CCCLXIV (XXI) CCXL 0.01 0.01 MMM MMM
    Es3m2e222annfg11m6 -25 ~ LXXXV CCL MMCC 90 CXV MMCCXXV (XXIV) DCLXX 0.009 MMM MMM
    Es3m2e222anneg19m5 -25 ~ LXXXV CCL MMCC 77 CLV MMCCXXV (XXV) LXXX 0.009 MMM MMM
    Es3m2e273annfg15m6 -25 ~ LXXXV CCL (XXVII) 90 CXXXV (VII) DCCXCIV (XXVI) CLX 0.008 MMM MMM
    Es3m2e273anneg18m5 -25 ~ LXXXV CCL (XXVII) 77 CL (VII) DCCXCIV (XXVI) CD (XXVI) CD 0.008 MMM MMM
    Es3m2e333anng21m8 -25 ~ LXXXV CCL (XXXIII) CI CLX (VIII) DCXVII (XXVIII) CDXC 0.007 MMM MMM
    Es3m2e333annfg28m6 -25 ~ LXXXV CCL (XXXIII) 90 CC (VIII) DCXVII (XXVIII) DCCC 0.007 MMM MMM
    Es3m2e393anngg18m8 -25 ~ LXXXV CCL (XXIX) CI CL (IX) CCCLXVII (XXXV) DCCCXXX 0.006 MMM MMM
    Es3m2e393annfg30m6 -25 ~ LXXXV CCL (XXIX) 90 CCX (IX) CCCLXVII (XXXVI) 0.006 MMM MMM
    Es3m2v222ANCG02M5 -25 ~ LXXXV CCCL MMCC 51 75 MMDCXXXII (VII) CDL 0.042 MMM MMM
    Es3m2v272ancg06m5 -25 ~ LXXXV CCCL MMDCC 51 90 MMCMXVI (VIII) CMXL 0.036 MMM MMM
    Es3m2v332anndg02m5 -25 ~ LXXXV CCCL MMMCCC 64 75 MMMCCXXIV (IX) CCCLX 0.033 MMM MMM
    Es3m2v332ancg10m5 -25 ~ LXXXV CCCL MMMCCC 51 CX MMMCCXXIV (IX) CM 0.033 MMM MMM
    Es3m2v392anndg02m5 -25 ~ LXXXV CCCL MMMCM 64 75 MMMDV (XI) CCCXX 0.028 MMM MMM
    Es3m2v392ancg11m5 -25 ~ LXXXV CCCL MMMCM 51 CXV MMMDV (X) DCCCLXX 0.029 MMM MMM
    Es3m2v472anneg02m5 -25 ~ LXXXV CCCL (IV) DCC 77 75 MMMDCCCXLVIII (XIII) CCCLXX 0.026 MMM MMM
    Es3m2v472anndg06m5 -25 ~ LXXXV CCCL (IV) DCC 64 90 MMMDCCCXLVIII (XIII) CDLX 0.026 MMM MMM
    Es3m2v472ANC14M5 -25 ~ LXXXV CCCL (IV) DCC 51 CXXX MMMDCCCXLVIII (XIII) DXL 0.026 MMM MMM
    Es3m2v562anneg03m5 -25 ~ LXXXV CCCL (V) DC 77 80 (IV) CC (XV) DL 0.023 MMM MMM
    Es3m2v562anndg09m5 -25 ~ LXXXV CCCL (V) DC 64 CV (IV) CC (XV) D 0.023 MMM MMM
    Es3m2v682anneg07m5 -25 ~ LXXXV CCCL (VI) DCCC 77 96 (IV) DCXXVIII (XVII) CCCXL 0.018 MMM MMM
    Es3m2v682anndg12m5 -25 ~ LXXXV CCCL (VI) DCCC 64 CXX (IV) DCXXVIII MDCCXL 0.019 MMM MMM
    Es3m2v822ang09m5 -25 ~ LXXXV CCCL (VIII) CC 77 CV (V) LXXXII (XIX) CMXC 0,016 MMM MMM
    Es3m2v822ndg15m5 -25 ~ LXXXV CCCL (VIII) CC 64 CXXXV (V) LXXXII (XIX) DCCLX 0.017 MMM MMM
    Es3m2v103anneg12m5 -25 ~ LXXXV CCCL (X) 77 CXX (V) DCXII (XXIII) DCCCLXX 0.013 MMM MMM
    Es3m2v123annfg10m6 -25 ~ LXXXV CCCL (XII) 90 CX (VI) CXLVIII (XXIV) DLXXX 0.012 MMM MMM
    Es3m2v123anneg16m5 -25 ~ LXXXV CCCL (XII) 77 CXL (VI) CXLVIII (XXV) CCCXXX 0.011 MMM MMM
    Es3m2g222ancg06m5 -25 ~ LXXXV CD MMCC 51 90 MMDCCCXIV (VII) CDL 0.038 MMM MMM
    Es3m2g272anndg02m5 -25 ~ LXXXV CD MMDCC 64 75 MMMCXVIII (VIII) DLX 0.034 MMM MMM
    Es3m2g272ancg08m5 -25 ~ LXXXV CD MMDCC 51 C MMMCXVIII (VIII) CMXL 0.033 MMM MMM
    Es3m2g332anndg04m5 -25 ~ LXXXV CD MMMCCC 64 85 MMMCDXLVII (X) CD 0.032 MMM MMM
    Es3M2G332ANCG11M5 -25 ~ LXXXV CD MMMCCC 51 CXV MMMCDXLVII (XI) XL 0.03 MMM MMM
    Es3m2g392anndg07m5 -25 ~ LXXXV CD MMMCM 64 96 MMMDCCXLVII (XII) CCXL 0.027 MMM MMM
    Es3M2G392ANCG14M5 -25 ~ LXXXV CD MMMCM 51 CXXX MMMDCCXLVII (XII) CMLXX 0.026 MMM MMM
    Es3m2g472ang03m5 -25 ~ LXXXV CD (IV) DCC 77 80 (IV) CXIII (XIV) CDXL 0.023 MMM MMM
    Es3M2G472ANDG09M5 -25 ~ LXXXV CD (IV) DCC 64 CV (IV) CXIII (XIV) CLXXX 0.024 MMM MMM
    Es3m2g562anneg06m5 -25 ~ LXXXV CD (V) DC 77 90 (IV) CDXC (XVI) CCCXXX 0.021 MMM MMM
    Es3m2g562anndg13m5 -25 ~ LXXXV CD (V) DC 64 CXXV (IV) CDXC (XVI) DCCCXXX 0,02 MMM MMM
    Es3m2g682anneg09m5 -25 ~ LXXXV CD (VI) DCCC 77 CV (IV) CMXLVIII (XVII) CCCXL 0,016 MMM MMM
    Es3m2g682anndg16m5 -25 ~ LXXXV CD (VI) DCCC 64 CXL (IV) CMXLVIII (XVII) DCCCXL 0,016 MMM MMM
    Es3M2G822ANNEG12M5 -25 ~ LXXXV CD (VIII) CC 77 CXX (V) CDXXXIII (XXI) DCXX 0.014 MMM MMM
    Es3m2g103annfg09m6 -25 ~ LXXXV CD (X) 90 CV (VI) (XXI) DL 0.012 MMM MMM
    Es3m2g103anneg16m5 -25 ~ LXXXV CD (X) 77 CXL (VI) (XXII) CDXL 0.012 MMM MMM
    Es3m2g123annfg13m6 -25 ~ LXXXV CD (XII) 90 CXXV (VI) DLXXIII (XXVI) DCXX 0.011 MMM MMM
    Es3m2g123anneg21m5 -25 ~ LXXXV CD (XII) 77 CLX (VI) DLXXIII (XXVI) DXX 0.011 MMM MMM

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