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2012 - 100n N 250v X2

Abstract: 200nf 200v ceramic capacitors Electric Double Layer Capacitors, Radial Lead Type
Text: chips with working voltages up to 500V and 0805 types up to 2kV . As part of the Dover Ceramic & , 10Vdc to 12kVdc - C0G/NP0 & X7R ProtectiCap™ capacitors TCC/VCC capacitors High Q capacitors - MS , / 500V 630V 250V 1kV 1.2kV 1.5kV 2kV 2.5kV 5) StackiCap™ high capacitance versions , Innovative, World-Class Ceramic Capacitors 12kV C0G/ C0G/ X5R X7R NP0 NP0 X5R C0G/ X7R NP0 X5R C0G/ X7R NP0 X5R C0G/ C0G/ C0G/ C0G/ C0G/ C0G/ C0G/ C0G/ C0G/ C0G/ C0G


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PDF 10Vdc 12kVdc AEC-Q200 250Vac 115Vac 400Hz 100n N 250v X2 200nf 200v ceramic capacitors Electric Double Layer Capacitors, Radial Lead Type
2010 - 200nf 200v ceramic capacitors

Abstract: Capacitor MLCC 1210 1uF 100V Y1 CAP 220P 1KV MLCC CRACK capacitor 560 pF 6kV sem 2005 inverter 250nF 630V capacitor 0402 X8R 100NF 50V 10 100n N 250v X2 sem 2005 backlight inverter
Text: soldering. 3) T = Maximum thickness. 10V C0G/ NP0 X7R 16V X5R C0G/ NP0 25V X7R X5R C0G/ NP0 X7R 50/63V X5R C0G/ NP0 100v 200/ 250V X7R X5R C0G/ NP0 0.47p 100p 1.5n 47n 56n 68n 0.47p 100p 0.47p 100p 0.47p 100p 470p 33n 220p 10n 150p* 1.5n* X7R C0G/ NP0 500V X7R C0G/ NP0 X7R 630V 1kV 1.2kV 1.5kV 2kV 2.5kV 3kV , ranges - 10Vdc to 6kVdc - C0G/NP0 & X7R X8R High Temperature capacitors TCC/VCC range High Q


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PDF 10Vdc AEC-Q200 250Vac 115Vac 400Hz Multilayer70 46/10/B 200nf 200v ceramic capacitors Capacitor MLCC 1210 1uF 100V Y1 CAP 220P 1KV MLCC CRACK capacitor 560 pF 6kV sem 2005 inverter 250nF 630V capacitor 0402 X8R 100NF 50V 10 100n N 250v X2 sem 2005 backlight inverter
2010 - sem 2005 backlight inverter

Abstract: Y1 CAP 220P 1KV 1nF 2000V X7R Capacitor X7R 100n 100V 0805 100n N 250v X2 270nF 750V 250nF 630V 8131M specification CECC 32100 MLCC
Text: soldering. 3) T = Maximum thickness. 10V C0G/ NP0 X7R 16V X5R C0G/ NP0 25V X7R X5R C0G/ NP0 X7R 50/63V X5R C0G/ NP0 100v 200/ 250V X7R X5R C0G/ NP0 0.47p 100p 1.5n 47n 56n 68n 0.47p 100p 0.47p 100p 0.47p 100p 470p 33n 220p 10n 150p* 1.5n* X7R C0G/ NP0 500V X7R C0G/ NP0 X7R 630V 1kV 1.2kV 1.5kV 2kV 2.5kV 3kV , ranges - 10Vdc to 6kVdc - C0G/NP0 & X7R X8R High Temperature capacitors TCC/VCC range High Q


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PDF 10Vdc AEC-Q200 250Vac 115Vac 400Hz sem 2005 backlight inverter Y1 CAP 220P 1KV 1nF 2000V X7R Capacitor X7R 100n 100V 0805 100n N 250v X2 270nF 750V 250nF 630V 8131M specification CECC 32100 MLCC
2011 - MLCC 0402 MTBF

Abstract: military passive component varistor 471 2kv 47n J 1000V sem 2005 backlight inverter IECQ-CECC Range 250nF 630V capacitor 33pF 6kV ESCC 5p6 0603
Text: 270n 390n X7R 1kV C0G/ NP0 - 1.0p 180p 1.0p 1.0n 3.9p 2.2n 4.7p 2.2n 10p 6.8n 8.2n 10p 12n 15n 10p , 10p 22n 27n 39n 390p 39n 47n 68n 680p 68n 82n 120n X7R 2kV C0G/ NP0 - 1.0p 39p 1.0p 220p 3.9p , X7R X8R High Temperature capacitors TCC/VCC range High Q capacitors - MS range Copper Barrier , coating post soldering. 3) T = Maximum thickness. 10V - 6kVdc Contents 10V C0G/ NP0 X7R X5R C0G/ NP0 16V X7R X5R C0G/ NP0 25V X7R X5R 50/63V C0G/ NP0 X7R X5R 56n 68n 270n 330n 560n 680n


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PDF 10Vdc AEC-Q200 250Vac 115Vac 400Hz 46/11/C MLCC 0402 MTBF military passive component varistor 471 2kv 47n J 1000V sem 2005 backlight inverter IECQ-CECC Range 250nF 630V capacitor 33pF 6kV ESCC 5p6 0603
2010 - philips cfl 18W

Abstract: DULUX OSRAM cfl schematic ballast T5 13W bridge rectifier using the diode 1N4007 diode wb1 10n 500V capacitor 18w cfl circuit Essential general electric cfl transistor ballast cfl circuit diagram - T5, 13W
Text: capacitor, cer. 10n /20 %/50V X7R 0603 C7 capacitor, cer. 0.82n/10 %/500V X7R 1206 dV/dt capacitor , C10 capacitor, 10n /5 %/ 2KV MKP lamp capacitor 10 nF/2 kV/5 % C11[1] capacitor, cer. 3u3 , 470 nF/10 V/10 % C6, C8 capacitor, cer. 10n /20 %/50V X7R 0603 10 nF/50 V C7 capacitor , X7R 0603 oscillator capacitor 1.2 nF/50 V/5 % C10 capacitor, 4n7/5 %/ 2KV MKP lamp , . 470n/10 %/10V X5R 0603 C6, C8 capacitor, cer. 10n /20 %/50V X7R 0603 C7 capacitor, cer


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PDF UM10416 UBA2024BP/BT UBA2024BP, UBA2024BT, UBA2024BP UBA2024BT philips cfl 18W DULUX OSRAM cfl schematic ballast T5 13W bridge rectifier using the diode 1N4007 diode wb1 10n 500V capacitor 18w cfl circuit Essential general electric cfl transistor ballast cfl circuit diagram - T5, 13W
samwha date code

Abstract: samwha capacitor date code 1000PF 10 1KV X7R 1206 capacitor SMD Code Marking B 101K 1KV SAMWHA SA SERIES Q1000 SMD CAPACITORS color code Samwha Ceramic Capacitors EIA-469
Text: ; 2kV 100pF~1000pF C4 : COG, X7R ; 2kV 100pF~1000pF Primary circuit and Snubber switching power supply C1, C2 : COG or X7R 1000pF~4700pF C4 : COG ; 2kV 100pF~330pF C5 : COG ; 1kV/ 2kV 100pF~470pF , X7R , X5R and Y5V. The X7R provides intermediate capacitance values which vary ± 15% over the , 10 W : 0.8±0.15, T : 0.8±0.15 How to Order(Product Identification) CS 1608 X7R 104 K 160 N R B , Temperature Coefficient Code Temperature Characteristice C0G X7R X5R Y5V Temperature Range -55 to 125 -55 to


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samwha capacitor date code

Abstract: SAMWHA SA SERIES cap 3216 samwha date code 1206 3216 SMD Capacitor types 10uf 63v capacitor samwha capacitor SMD 476 10V CAPACITOR 10uF Samwha 100uF capacitor samwha B 101K 1KV
Text: 1. C2 : X7R ; 250V 10nF~47nF C3 : COG ; 630V 47pF~100pF C3 : COG, X7R ; 2kV 100pF~1000pF C4 : COG, X7R ; 2kV 100pF~1000pF Table 1. MLCC recommendation for isolated type DC-DC converter module , (Available up to 470nF) Output (C7) C1, C2 : COG or X7R 1000pF~4700pF C4 : COG ; 2kV 100pF~330pF C5 : COG ; 1kV/ 2kV 100pF~470pF 1210 X7R 470nF 100V 1812 X7R 1.0uF 100V (High Capacitance Application , Tol(±) W Tol(±) X7R , X5R and Y5V. The X7R provides intermediate capacitance values which vary


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ceramic capacitor 6,8 nF 1kV p 5

Abstract: hitano ceramic capacitors hitano electrolytic capacitor date code X7R 10n 2KV hitano ELECTROLYTIC capacitors MARKING hitano hitano capacitor TA Hitano hitano capacitor electrolytic hitano marking electrolytic capacitor
Text: Range ­ X7R /X5R 6-7 Capacitance Range ­ Y5V & SPQ 8 Specifications and Test Methods 9-12 , DIELECTRIC N (COG) B ( X7R ) Y (Y5V) X (X5R) CAPACITANCE Value in Pico farads: Two significant , 3K 10 pF A 500 250 500 1KV 2KV 250 500 1KV A H H L L L L L 250 500 1KV 2KV 3KV F F F 250 500 1KV 2KV 3KV L L L 12 pF A A H H , . H T ANO ENTERPR S E CORP H TANO ENTERPR SE CORP Multilayer Ceramic Capacitors 5. X7R


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2013 - Not Available

Abstract: No abstract text available
Text: C0G 2kV # 2.4kV 4 23 41 SFJGC2K00152MX 1.5nF X7R 2kV # 2.4kV 7 26 45 SFJGC2K00222MX 2.2nF X7R 2kV # 2.4kV 10 30 50 3.3nF X7R 2kV # 2.4kV 13 33 52 4.7nF X7R 2kV # 2.4kV 1 16 36 55 6.8nF X7R 2kV # 2.4kV 2 19 39 57 10nF X7R 2kV # 2.4kV 4 22 41 60 15nF X7R , 25 44 SFJGL2K00152MX 1.5nF X7R 2kV # 2.4kV 9 29 48 SFJGL2K00222MX


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PDF 1000hr -55oC 125oC 97lbf P107822)
2014 - Not Available

Abstract: No abstract text available
Text: C0G 2kV # 2.4kV 4 23 41 SFJGC2K00152MX 1.5nF X7R 2kV # 2.4kV 7 26 45 SFJGC2K00222MX 2.2nF X7R 2kV # 2.4kV 10 30 50 3.3nF X7R 2kV # 2.4kV 13 33 52 4.7nF X7R 2kV # 2.4kV 1 16 36 55 6.8nF X7R 2kV # 2.4kV 2 19 39 57 10nF X7R 2kV # 2.4kV 4 22 41 60 15nF X7R , 1.0nF C0G 2kV # 2.4kV 6 25 44 SFJGL2K00152MX 1.5nF X7R 2kV # 2.4kV 9


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PDF 1000hr -55oC 125oC 97lbf P108893)
2001 - R114426

Abstract: BLM11P300S 3006P 201 PHILIPS 433003036301 Philips 2322-702-96001 433003036301 dipsw_4 HLMP6500-011 siemens c45 Stocko R5
Text: C1 B45196H1107M9 100u B45196 SIEMENS C4 2222-916-16736 10n X7R PHILIPS C5 2222-916-16736 10n X7R PHILIPS C12 2222-786-16749 100n X7R PHILIPS C19 2222-916-16736 10n X7R PHILIPS C22 2222-916-16736 10n X7R PHILIPS C41 2222-916-16736 10n X7R PHILIPS C43 2222-916-16736 10n X7R PHILIPS C44 2222-916-16736 10n X7R PHILIPS C47 2222-916-16736 10n X7R PHILIPS D6 HLMP6400-011 GREEN Diffused_Lens , 2222-916-16736 10n X7R PHILIPS C3 2222-916-16736 10n X7R PHILIPS C4 2222-916-16736 10n X7R PHILIPS C5


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PDF OM5809 TZA3014 TZA3019 AN01023 TP97036 OM5809. R114426 BLM11P300S 3006P 201 PHILIPS 433003036301 Philips 2322-702-96001 433003036301 dipsw_4 HLMP6500-011 siemens c45 Stocko R5
2013 - Not Available

Abstract: No abstract text available
Text: SFJNC2K00152MX 1.5nF X7R 2kV # 2.4kV 7 26 45 2.2nF X7R 2kV # 2.4kV 10 30 50 3.3nF X7R 2kV # 2.4kV 13 33 52 4.7nF X7R 2kV # 2.4kV 1 16 36 55 6.8nF X7R 2kV # 2.4kV 2 19 39 57 10nF X7R 2kV # 2.4kV 4 , SFJNL2K00102MC 1.0nF C0G 2kV # 2.4kV 6 25 44 SFJNL2K00152MX 1.5nF X7R 2kV # 2.4kV 9 29 48 2.2nF X7R 2kV # 2.4kV 12 31 51 3.3nF X7R 2kV


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PDF 1000hr -55oC 125oC 97lbf P107561)
2013 - Not Available

Abstract: No abstract text available
Text: X7R 2kV # 2.4kV 7 26 45 2.2nF X7R 2kV # 2.4kV 10 30 50 3.3nF X7R 2kV # 2.4kV 13 33 52 4.7nF X7R 2kV # 2.4kV 1 16 36 55 6.8nF X7R 2kV # 2.4kV 2 19 39 57 10nF X7R 2kV # 2.4kV 4 22 41 , 1.5nF X7R 2kV # 2.4kV 9 29 48 2.2nF X7R 2kV # 2.4kV 12 31 51 3.3nF X7R 2kV # 2.4kV 15 35 54 4.7nF X7R 2kV # 2.4kV 1 18 39 57


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PDF 1000hr -55oC 125oC 97lbf P107615)
2014 - Not Available

Abstract: No abstract text available
Text: X7R 2kV # 2.4kV 7 26 45 2.2nF X7R 2kV # 2.4kV 10 30 50 3.3nF X7R 2kV # 2.4kV 13 33 52 4.7nF X7R 2kV # 2.4kV 1 16 36 55 6.8nF X7R 2kV # 2.4kV 2 19 39 57 10nF X7R 2kV # 2.4kV 4 22 41 , C0G 2kV # 2.4kV 6 25 44 SFJEL2K00152MX 1.5nF X7R 2kV # 2.4kV 9 29 48 SFJEL2K00222MX 2.2nF X7R 2kV # 2.4kV 12 31 51 3.3nF X7R 2kV


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PDF 1000hr -55oC 125oC 97lbf P108893)
2010 - SFJEC1000225MX

Abstract: 150pf 3kv SFJEC0500335MX
Text: 2.2F 3.3F C0G C0G C0G C0G C0G C0G C0G X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R 3kV 3kV 3kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 1kV 1kV 1kV 1kV 1kV 500 500 500 500 500 300 200 100 100 50 3.75kV , 500V = 1kV = 2kV =3kV Capacitance in picofarads (pF) 0102 Capacitance Tolerance M First , the number of zeros following. M = 20% Dielectric X C = C0G/NP0 X = X7R Hardware 0 0 =


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PDF 1000hr 1000F -55oC 125oC 97lbf 100pF 3300pF P104775) SFJEC1000225MX 150pf 3kv SFJEC0500335MX
SFJGL

Abstract: 680nf 2Kv sfjgl1000225mx 0217A
Text: ") 3.0g (0.11oz) Silver plate on copper undercoat C0G C0G C0G C0G C0G C0G C0G X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R 3kV* 3kV* 3kV* 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 1kV* 1kV* 1kV* 1kV* 1kV* 500 , 050 100 200 300 500 1K0 2K0 3K0 = 50V = 100V = 200V = 300V = 500V = 1kV = 2kV =3kV , X7R Hardware 1 1 = Nut & Wavy Washer 3 = Nut & Toothed Lockwasher Note: The addition of a


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PDF 1000hr 1000F -55oC 125oC 500nH 97lbf 100pF 3300pF P104978) SFJGL 680nf 2Kv sfjgl1000225mx 0217A
2010 - SFJGP0500665MX

Abstract: x7r 200pf
Text: 250 250 125 100MHz 3kV* 3kV* 3kV* 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV , ) C0G C0G C0G C0G C0G C0G C0G X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R 200pF 300pF 440pF 660pF 940pF 1.36nF 2.0nF 3.0nF , 200V = 300V = 500V = 1kV = 2kV =3kV Capacitance in picofarads (pF) 0665 Capacitance , 3300pF 0332 = 3.3µF Dielectric X C = C0G/NP0 X = X7R Hardware 1 1 = Nut & Wavy Washer 3 =


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PDF 1000hr 1000F -55oC 125oC 97lbf 100pF 3300pF P104976) SFJGP0500665MX x7r 200pf
2010 - SFJNC

Abstract: 680nf 2Kv 330nF 50V X7R
Text: 3.3F C0G C0G C0G C0G C0G C0G C0G X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R 3kV 3kV 3kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 1kV 1kV 1kV 1kV 1kV 500 500 500 500 500 300 200 100 100 50 3.75kV 3.75kV , = 2kV =3kV Capacitance in picofarads (pF) 0102 Capacitance Tolerance M First digit is , number of zeros following. M = 20% Dielectric X C = C0G/NP0 X = X7R Hardware 0 0 = Without


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PDF 1000hr 1000F -55oC 125oC 97lbf 100pF 150ant 3300pF P104775) SFJNC 680nf 2Kv 330nF 50V X7R
2005 - 68nf

Abstract: No abstract text available
Text: 2.2nF 3.3nF 4.7nF 6.8nF 10nF 15nF 22nF 33nF 47nF 68nF C0G C0G C0G C0G C0G C0G C0G X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R 3kV 3kV 3kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 1kV 1kV 1kV 1kV 1kV 3.75kV 3.75kV 3.75kV 2.5kV 2.5kV 2.5kV 2.5kV 2.5kV , 33nF 47nF 68nF 100nF 150nF 220nF 330nF 470nF 680nF 1µF 1.5µF 2.2µF X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R 5000103MX1 5000153MX1 5000223MX1


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PDF 100nF 150nF 220nF 330nF 470nF 680nF 5000103MX1 5000153MX1 5000223MX1 5000333MX1 68nf
2010 - 15A10G

Abstract: SFJNL3K00101MC 30KV 680nf 2Kv sfjn SFJNL2K00103MX SFJNL2000105MX
Text: 3.3F C0G C0G C0G C0G C0G C0G C0G X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R 3kV 3kV 3kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 1kV 1kV 1kV 1kV 1kV 500 500 500 500 500 300 200 100 100 50 3.75kV 3.75kV , ) 500 050 100 200 300 500 1K0 2K0 3K0 = 50V = 100V = 200V = 300V = 500V = 1kV = 2kV , zeros following. M = 20% Dielectric X C = C0G/NP0 X = X7R Nuts & washers 0 0 = Without 1


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PDF 1000hr 1000F -55oC 125oC 500nH 97lbf 100pF 150pF 220gures 15A10G SFJNL3K00101MC 30KV 680nf 2Kv sfjn SFJNL2K00103MX SFJNL2000105MX
2014 - Not Available

Abstract: No abstract text available
Text: SFJNC2K00152MX 1.5nF X7R 2kV # 2.4kV 7 26 45 SFJNC2K00222MX 2.2nF X7R 2kV # 2.4kV 10 30 50 3.3nF X7R 2kV # 2.4kV 13 33 52 4.7nF X7R 2kV # 2.4kV 1 16 36 55 6.8nF X7R 2kV # 2.4kV 2 19 39 57 10nF X7R 2kV # 2.4kV 4 22 41 60 15nF X7R 1kV# 1.2kV 7 25 44 62 22nF , SFJNL2K00102MC 1.0nF C0G 2kV # 2.4kV 6 25 44 SFJNL2K00152MX 1.5nF X7R 2kV


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PDF 1000hr -55oC 125oC 97lbf P108893)
X7R 3KV

Abstract: 330nF 50V X7R 680nf 2Kv 470nF 50V X7R 0217A
Text: 2.2F 3.3F C0G C0G C0G C0G C0G C0G C0G X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R 3kV* 3kV* 3kV* 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 2kV * 1kV* 1kV* 1kV* 1kV* 1kV* 500* 500* 500* 500* 500 300 200 100 , 300 500 1K0 2K0 3K0 = 50V = 100V = 200V = 300V = 500V = 1kV = 2kV =3kV Capacitance in , % Examples: 0101 = 100pF 0332 = 3300pF 0332 = 3.3µF Dielectric X C = C0G/NP0 X = X7R Hardware 0


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PDF 1000hr 1000F -55oC 125oC 97lbf 100pF 3300pF P104977) X7R 3KV 330nF 50V X7R 680nf 2Kv 470nF 50V X7R 0217A
2010 - 30KV

Abstract: SFJEL
Text: 3.3F C0G C0G C0G C0G C0G C0G C0G X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R 3kV 3kV 3kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 1kV 1kV 1kV 1kV 1kV 500 500 500 500 500 300 200 100 100 50 3.75kV 3.75kV , 500V = 1kV = 2kV =3kV Capacitance in picofarads (pF) 0102 Capacitance Tolerance M First , the number of zeros following. M = 20% Dielectric X C = C0G/NP0 X = X7R Nuts & washers


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PDF 1000hr 1000F -55oC 125oC 500nH 97lbf 100gures 100pF 3300pF P104775) 30KV SFJEL
2005 - 3K00

Abstract: No abstract text available
Text: Rated DWV Code Voltage (Vd.c.) (Vd.c.) C0G C0G C0G C0G C0G C0G C0G X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R 3kV 3kV 3kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 2kV 1kV 1kV 1kV 1kV 1kV 3.75kV 3.75kV 3.75kV , .) X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R X7R 500 500 500 500 500 500 500 500 500 500


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PDF 5000103MX1 5000153MX1 5000223MX1 5000333MX1 5000473MX1 5000683MX1 5000104MX1 5000154MX1 5000224MX1 5000334MX1 3K00
2002 - COG 1KV

Abstract: X7R 3KV
Text: High Voltage Ceramic Chip Capacitors - COG/ X7R - 1kV & 2kV Metal tweezers should never be used as , 1.6 0.063 Min Max 0.25 0.75 0.01 0.03 COG 1kV/ 2kV 1kV/ 2kV X7R COG 1kV/ 2kV 1kV/ 2kV 1kV 2kV 1kV , over temperature range Tangent of loss angle (tan ) COG / NPO X7R Y5V & Z5U Ultra Stable , Capacitors - COG/ X7R /Z5U - 500V / 250V mm inches mm inches mm inches mm inches 3.2±0.3 0.125±0.012 1.6±0.2 0.063±0.008 1.6 0.063 Min Max 0.25 0.75 0.01 0.03 COG X7R Z5U 3.2±0.3 0.125±0.012 2.5±0.3


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