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1997 - Semikron SKBA b 500 c 1400

Abstract: Semikron SKB B 500 1400 Semikron SKB b 500 Semikron SKB C3200/2200 Semikron SKB L5b Semikron SKB 2/08 Semikron SKB 2/12 Semikron SKB 250/220 Semikron SKD 30/04 a 1 Semikron SKB 2/02
Text: Mounted on a painted metal sheet of min. 250 x 250 x 1 mm © by SEMIKRON B 11 ­ 7 B 11 ­ 8 , mounted on an insulator Mounted on a painted metal sheet of min. 250 x 250 x 1 mm © by SEMIKRON , insulator Mounted on a painted metal sheet of min. 250 x 250 x 1 mm © by SEMIKRON 0896 B 11 ­ 15 , a painted metal sheet of min. 250 x 250 x 1 mm © by SEMIKRON 0896 B 11 ­ 29 B 11 ­ 30 , Tamb = 45 °C; isolated1) chassis2) 1 ,7 A 2,5 A IDCL Tamb = 45 °C; isolated1) chassis2) 1


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1998 - Semikron SKB b 80

Abstract: Semikron SKB b 500 Semikron SKB 250 semikron skd semikron skb 60 SKB C Semikron SKB b 250 SKB 8 02 Semikron SKB 72/08 SKD 82/16
Text: / inductive load ID Tamb = 45 °C, isolated 1 ) chassis2) P 1A/120 P 1A/200 80 A (110 °C) 2 SKD 62 SKD 82 SKB 52 SKD 62 SKB 72 SKD 82 42 A 60 A 60 A 80 A 9,5 A 21,5 A 40 A 45 , Tvj = 25 °C; IF = 150 A 1 , 8 V 1 ,6 V V(TO) Tvj = 150 °C 0,85 V 0,85 V rT Tvj = , diode 1 ,5 °C/W 1 , 1 °C/W total, SKB 0,375 °C/W 0,275 °C/W total, SKD 0,25 °C/W 0 , suspended or mounted on an isolator Mounted on a painted metal sheet of minimum 250 x 250 x 1 mm: Rthha = 1


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PDF A/120 A/200 Semikron SKB b 80 Semikron SKB b 500 Semikron SKB 250 semikron skd semikron skb 60 SKB C Semikron SKB b 250 SKB 8 02 Semikron SKB 72/08 SKD 82/16
semikron skd

Abstract: semikron skd 50 semikron skd 40 semikron skd 32 semikron skd 100 SKD83 SKD53 c1813 skd 33/08 SKD5308
Text: back SEMIKRON VRRM VRSM Id (Th 1 ) = . . . °C) V V 33 A (110 °C) 53 A (100 °C) 83 A (95 , vs. output current and case temperature SKD83.xls 3c B 11 - 26 0898  © by SEMIKRON seMIKRDn SKD SS SKD SS SKD SS Case G 55 Dimensions in mm  © by SEMIKRON 0898 B 11 - 27 , 36 53 83 A (Th 1 ) = . . . °C) (106) (100) (95) °C Tamb = 45 °C; isolated 2) 4 4 4 A chassis , °C; (IF = . . . A ); max. 1 ,60 (50) 1 ,50 (50) 1 ,45 (80) V V(TO) Tvj = 150 °C 0,8 0,8 0,8 V rT Tvj =


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PDF P5A/100 R4A/120 P1A/120 P1A/120F SKD53 SKD83 semikron skd semikron skd 50 semikron skd 40 semikron skd 32 semikron skd 100 c1813 skd 33/08 SKD5308
Semikron SKB 7 02

Abstract: SKB35 Semikron SKB B 500 1400 SKB 7 / 02 skd 25 02 Semikron SKB 250 P5100 Semikron SKB 7 /08 11a470 SKB 7 08
Text: SEMIKRON INC 3 bE D i ai.3bt.7i a a s 7 c )Q T-ZS-ol bisekû _ SEMIKRON - Power Bridge Rectifiers SKB 25 SKB 35 SKD 25 V rsm V rrm Id (Tease 17 A = (75 °C) Types , Types n 0, 1 0,15 0,3 0,5 0,7 - 100 200 400 600 800 1000 1200 1400 1600 _ SKD 25/02 SKD 25/04 _ SKD 25/08 - 0,7 - SKB 25/12 SKB 25/16 1 - 1 ,5 SKD 25/12 SKD 25/14 SKD 25/16 1 1 ,2 , Visol RC Fu Mi w Case SKD 25 SKB 35 3,5 A 4A 3,5 A 12 A 13 A 10 A 15 A 17,5 A 13,5 A 20 A 22,5 A 17 A


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PDF P1/120 P5/100 013bfc Semikron SKB 7 02 SKB35 Semikron SKB B 500 1400 SKB 7 / 02 skd 25 02 Semikron SKB 250 P5100 Semikron SKB 7 /08 11a470 SKB 7 08
1997 - Semikron SKB b 80

Abstract: Semikron SKB b 250 Semikron SKB B 500 1400 Semikron SKB b 500 Semikron SKB 250 SKB 8 02 semikron skb 50 DIODE BRIDGE SKB SKB 40 motor SKD
Text: a painted metal sheet of minimum 250 x 250 x 1 mm: Rthha = 1 ,8 °C/W © by SEMIKRON 0896 B 11 , 82/08 80 A (110 °C) 800 V SKB 52/08 SKB 72/08 SKD 62/08 1200 V SKB 52/12 SKB , , isolated 1 ) 2) chassis P 1A/120 P 1A/200 42 A 60 A 60 A 80 A 9,5 A 21,5 A 40 A 45 A , 150 A 1 , 8 V 1 ,6 V V(TO) Tvj = 150 °C 0,85 V 0,85 V rT Tvj = 150 °C 8 m , °C/W 1 , 1 °C/W total, SKB 0,375 °C/W 0,275 °C/W total, SKD 0,25 °C/W 0,183 °C/W


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SKB 14 08

Abstract: skB 28 Semikron SKB 1 /02 semikron 14/08 Semikron SKB DIODE BRIDGE skb Semikron SKD 62 skd82 semikron skb 60 SKB 14 12
Text: a painted metal sheet of minimum 250 x 250 x 1 mm: Rthha = 1 ,8 °C/W © by SEMIKRON 0896 B 11 , 82/08 80 A (110 °C) 800 V SKB 52/08 SKB 72/08 SKD 62/08 1200 V SKB 52/12 SKB , , isolated 1 ) 2) chassis P 1A/120 P 1A/200 42 A 60 A 60 A 80 A 9,5 A 21,5 A 40 A 45 A , 150 A 1 , 8 V 1 ,6 V V(TO) Tvj = 150 °C 0,85 V 0,85 V rT Tvj = 150 °C 8 m , °C/W 1 , 1 °C/W total, SKB 0,375 °C/W 0,275 °C/W total, SKD 0,25 °C/W 0,183 °C/W


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2009 - Not Available

Abstract: No abstract text available
Text: SKD 82 Symbol Conditions Values Units  ® SEMIPONT 3 Power Bridge Rectifiers SKD 82 Features Typical Applications 1 ) 2) 3) SKD 1 28-06-2007 SCH  © by SEMIKRON SKD 82 Fig. 3L Power dissipation vs. output current Fig. 3R power dissipation vs. case , Fig. 12 Transient thermal impedance vs. time 2 28-06-2007 SCH  © by SEMIKRON SKD 82 , suitability. 3 28-06-2007 SCH  © by SEMIKRON SEMIKRON


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2007 - semikron skd 50

Abstract: No abstract text available
Text: SKD 50 Symbol Conditions Values Units Power Bridge Rectifiers SKD 50 Features Typical Applications 1 ) 2) SKD 1 05-04-2007 SCT Â © by SEMIKRON SKD 50 Fig. 3L , overload characteristics vs. time Fig. 9 Forward characteristics of a diode arm 2 05-04-2007 SCT Â © by SEMIKRON SKD 50 Dimensions in mm This technical information specifies semiconductor , delivery, performance or suitability. 3 05-04-2007 SCT Â © by SEMIKRON SEMIKRON


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1997 - Semikron 50 04 a3

Abstract: Semikron SKB 7 /04 SKB 7 04 semikron skd 50/08 Semikron SKB 50/02 a3 skb 50/04 a3 SKB 7 02 semikron skd 50/04 Semikron SKB 50/16 A3 Semikron SKB b /02 a 4
Text: SKB 50/12 A3 SKB 50/14 A3 SKB 50/16 A3 0, 1 0,3 0,4 0,6 0,7 0,8 SKD 50/02 A3 SKD 50/04 A3 SKD 50/08 A3 SKD 50/12 A3 SKD 50/14 A3 SKD 50/16 A3 SKB 50 SKD 50 0, 1 0,2 0,4 0,6 0,7 0 , heatsink M2 to terminals w Case 1 ) 2) Power Bridge Rectifiers 50 A (92 °C) Types V , 50 10 20 34 47 8 16 29 40 SKD 50 10 22 40 60 10 22 40 60 750 600 2800 1800 1 , /W °C/W °C/W °C/W °C °C V µF A Nm lb. in. Nm lb. in. g SKB SKD Features ·


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PDF P1A/120 P1A/120 Semikron 50 04 a3 Semikron SKB 7 /04 SKB 7 04 semikron skd 50/08 Semikron SKB 50/02 a3 skb 50/04 a3 SKB 7 02 semikron skd 50/04 Semikron SKB 50/16 A3 Semikron SKB b /02 a 4
Semikron SKD 62

Abstract: No abstract text available
Text: SKD 62 Symbol Conditions Values Units ® SEMIPONT 3 Power Bridge Rectifiers SKD 62 Features Typical Applications 1 ) 2) 3) SKD 1 06-04-2004 SCT © by SEMIKRON SKD 62 Fig. 3L Power dissipation vs. output current Fig. 3R Power dissipation vs. case temperature Fig. 6 Surge overload characteristics vs. time Fig. 9 Forward characteristics of a diode arm Fig. 12 Transient thermal impedance vs. time 2 06-04-2004 SCT © by SEMIKRON SKD 62


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2006 - Not Available

Abstract: No abstract text available
Text: Diode - Freewheeling Temperature Sensor Mechanical data D 1 02-03-2006 SCT  © by SEMIKRON SKD 116/.L100 Fig. 1 Power dissipation per module vs. output current Fig. 2 Surge , Ic=f(Vce), Tj=25°C 2 02-03-2006 SCT  © by SEMIKRON SKD 116/.L100 Fig. 7 Output IGBT , ) Fig. 10 Diode forward characteristic 3 02-03-2006 SCT  © by SEMIKRON SKD 116/.L100 UL , regarding delivery, performance or suitability. 4 02-03-2006 SCT  © by SEMIKRON SEMIKRON


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2009 - Semikron SKD 25

Abstract: No abstract text available
Text: SKD 25 Symbol Conditions Values Units Power Bridge Rectifiers SKD 25 Features Typical Applications 1 ) 2) SKD 1 26-10-2004 SCT © by SEMIKRON SKD 25 Fig. 3L , overload characteristics vs. time Fig. 9 Forward characteristics of a diode arm 2 26-10-2004 SCT © by SEMIKRON SKD 25 Dimensions in mm This technical information specifies semiconductor , delivery, performance or suitability. 3 26-10-2004 SCT © by SEMIKRON SEMIKRON


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Not Available

Abstract: No abstract text available
Text: Diode - Freewheeling Temperature Sensor Mechanical data D 1 12-12-2005 MUS  © by SEMIKRON SKD 116/. -L75 Fig. 1 Power dissipation per module vs. output current Fig. 3 Forward , ), Tj=25°C 12-12-2005 MUS  © by SEMIKRON SKD 116/. -L75 Fig. 7 Output IGBT characteristic , ) Fig. 10 Diode forward characteristic 12-12-2005 MUS  © by SEMIKRON SKD 116/. -L75 UL , regarding delivery, performance or suitability. 4 12-12-2005 MUS  © by SEMIKRON SEMIKRON


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2009 - skd83

Abstract: No abstract text available
Text: SKD 83 Symbol Conditions Values Units Power Bridge Rectifiers SKD 83 Features Typical Applications 1 ) 2) 3) SKD 1 06-04-2004 SCT © by SEMIKRON SKD 83 Fig. 3L Power dissipation vs. output current 2 Fig. 3R Power dissipation vs. heatsink temperature 06-04-2004 SCT © by SEMIKRON SKD 83 Dimensions in mm This technical information specifies , regarding delivery, performance or suitability. 3 06-04-2004 SCT © by SEMIKRON SEMIKRON


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1998 - semikron skd

Abstract: semikron skd 50 Semikron SKD 26 16
Text: a . c. 50 Hz; r.m.s; 1 s/ 1 min 10 s Case to heatsink SI units US units Case 2) 3) SKD 53 , insulator Mounted on a painted metal sheet of min. 250 x 250 x 1 mm © by SEMIKRON Preliminary Data Units ­ 40 . + 150 ­ 40 . + 125 a w 1 ) SKD 33 SKD 33 SKD 53 SKD 83 0898 , SKD 33 SKD 53 SKD 83 Case G 55 1 Dimensions in mm © by SEMIKRON 0898 B 11 ­ 27 , VRRM VRSM Power Bridge Rectifiers ID (Th 1 ) = . . . °C) V V 33 A (110 °C) 53 A


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PDF P5A/100 R4A/120 P1A/120 P1A/120F semikron skd semikron skd 50 Semikron SKD 26 16
semikron skd 146

Abstract: SKD146
Text: Temperature Sensor Mechanical data D 1 05-09-2007 DIL © by SEMIKRON SKD 146/16-L140 Fig. 1 , © by SEMIKRON SKD 146/16-L140 Fig. 7 Output IGBT characteristic Ic=f(Vce), Tj=125°C Fig. 8 , 3 05-09-2007 DIL © by SEMIKRON SKD 146/16-L140 UL recognized File n° E 63 532 , SKD 146/16-L140 Absolute Maximum Ratings Symbol Conditions Bridge - Rectifier SEMIPONTTM 6 , Diode SKD 146/16-L140 Target Data Features Characteristics Symbol Conditions Diode - Rectifier


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PDF 146/16-L140 semikron skd 146 SKD146
2009 - Not Available

Abstract: No abstract text available
Text: SKD 145 Symbol Conditions Values Units SEMIPONT© 5 Bridge Rectifiers SKD 145 Target Data Features Typical Applications D 1 31-10-2005 RAM © by SEMIKRON SKD 145 Fig. 1 Power dissipation vs. output current Fig. 4 Forward characteristics of a single diode 2 31-10-2005 RAM © by SEMIKRON SKD 145 Dimensions in mm This technical information specifies , regarding delivery, performance or suitability. 3 31-10-2005 RAM © by SEMIKRON SEMIKRON


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2009 - semikron skd 60

Abstract: No abstract text available
Text: SKD 60 Symbol Conditions Values Units SEMIPONT® 2 Power Bridge Rectifiers SKD 60 Features Typical Applications 1 ) SKD 1 06-04-2004 SCT © by SEMIKRON SKD 60 Fig. 3L , overload characteristics vs. time Fig. 9 Forward characteristics of a diode arm Fig. 12 Transient thermal impedance vs. time 2 06-04-2004 SCT © by SEMIKRON SKD 60 Dimensions in mm This , SCT © by SEMIKRON SEMIKRON


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2006 - semikron skd 30

Abstract: No abstract text available
Text: SKD 30 Symbol Conditions Values Units Power Bridge Rectifiers SKD 30 Features Typical Applications 1 ) 2) SKD 1 06-04-2004 SCT © by SEMIKRON SKD 30 Fig. 3L , overload characteristics vs. time Fig. 9 Forward characteristics of a diode arm 2 06-04-2004 SCT © by SEMIKRON SKD 30 Dimensions in mm This technical information specifies semiconductor , delivery, performance or suitability. 3 06-04-2004 SCT © by SEMIKRON SEMIKRON


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1998 - DIN 46249

Abstract: DIN 46249 TERMINALS semikron skd 51 46249 BRIDGE RECTIFIERS semikron skd
Text: VRRM VRSM VVRMS Power Bridge Rectifiers ID (Tcase = 127 °C) 50 1 ) A V V 500 , * SKD 51 1 ) Units ID, IDCL Tcase = 127 °C Tamb = 45 °C; isolated 2) chassis 3) R4A/120 P5A , = VRRM Tvj = 25 °C; IF = IR = 1 A 1 ,45 0,8 8,5 0,2 4 typ. 5 2000 V V m mA mA µs , connection see DIN IEC 760E and DIN 46249 part 1 Freely suspended or mounted on an insulator Mounted on a painted metal sheet of min. 250 x 250 x 1 mm © by SEMIKRON 0898 B 11 ­ 39 Fig. 3 Power


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PDF R4A/120 P5A/100 P1A/120 DIN 46249 DIN 46249 TERMINALS semikron skd 51 46249 BRIDGE RECTIFIERS semikron skd
2009 - semikron skd 100

Abstract: semikron skd
Text: SKD 100 Symbol Conditions Values Units SEMIPONT® 2 Power Bridge Rectifiers SKD 100 Features Typical Applications 1 ) SKD 1 06-04-2004 SCT © by SEMIKRON SKD 100 Fig , Surge overload characteristics vs. time Fig. 9 Forward characteristics of a diode arm Fig. 12 Transient thermal impedance vs. time 2 06-04-2004 SCT © by SEMIKRON SKD 100 Dimensions in mm , 06-04-2004 SCT © by SEMIKRON SEMIKRON


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2006 - Not Available

Abstract: No abstract text available
Text: SKD 110 Symbol Conditions Values Units ® SEMIPONT 4 Power Bridge Rectifiers SKD 110 Features Typical Applications 1 ) 2) SKD 1 06-04-2004 SCT © by SEMIKRON SKD 110 Fig. 3L Power dissipation vs. output current Fig. 3R Power dissipation vs. case temperature Fig. 6 Surge overload characteristics vs. time Fig. 9 Forward characteristics of a diode arm Fig. 12 Transient thermal impedance vs. time 2 06-04-2004 SCT © by SEMIKRON SKD 110


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2009 - Not Available

Abstract: No abstract text available
Text: SKD 210 Symbol Conditions Values Units SEMIPONT® 4 Power Bridge Rectifiers SKD 210 Preliminary Data Features Typical Applications 1 ) SKD 1 29-06-2005 NOS © by SEMIKRON SKD 210 Fig. 3L: Power dissipation vs. output current Fig. 3R Power dissipation vs. case temperature Fig. 6 Surge overload characteristics vs. time Fig. 9 Forward characteristics of a diode arm Fig. 12 Transient thermal impedance vs. time 2 29-06-2005 NOS © by SEMIKRON SKD 210


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PDF 29-06-200ions
1997 - Semikron SKD 30/04 a 1

Abstract: semikron skb 30 Semikron SKD 30/02 a 1 SKB 7 02 SKB 7 04 Semikron SKB 25 /04 Semikron SKB b 500 Semikron SKB 7 02 SKB 30 / 02 SKB 7 08
Text: US units Power Bridge Rectifiers 30 A (98 °C) Types SKD 30/02 A1 SKD 30/04 A1 SKD 30/08 A1 , 15 % 1 ,5 ± 15 % 13 ± 15 % 125 G 12 G 13 Rmin 0,15 0,3 0,5 0,75 0,9 1 Units A A , /W °C °C V µF A Nm lb. in. Nm lb.in. g SKB 30 SKD 30 SKB SKD Features · , sheet of min. 250 x 250 x 1 mm © by SEMIKRON 0896 B 11 ­ 29 B 11 ­ 30 © by SEMIKRON , VRSM VRRM V 200 400 800 1200 1400 1600 30 A (94 °C) ID (Tcase = . . .) Types SKB


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PDF P5A/100 R4A/120 P1A/120 P1A/120 Semikron SKD 30/04 a 1 semikron skb 30 Semikron SKD 30/02 a 1 SKB 7 02 SKB 7 04 Semikron SKB 25 /04 Semikron SKB b 500 Semikron SKB 7 02 SKB 30 / 02 SKB 7 08
1998 - SKB 7 04

Abstract: SKB 7 08 Semikron SKB 25/12 SKB 7 02 Semikron SKB 25/02 Semikron SKB 7 /04 Semikron SKB 7 02 skb 7 12 SKB 7 / 12 Semikron SKB 25 /04
Text: 1 ) 2) SI units US units Power Bridge Rectifiers 20 A (73 °C) Types ­ SKD 25/02 SKD 25 , 24 26 G 10 G 11 Rmin ­ 0,15 0,3 ­ 0,7 1 1 ,2 1 ,5 Units A A A A A A A A A , . 250 x 250 x 1 mm © by SEMIKRON 0896 B 11 ­ 19 B 11 ­ 20 © by SEMIKRON © by , VRSM VRRM V 100 200 400 600 800 1200 1400 1600 17 A = (75 °C) Types SKB 25/01 SKB , 0, 1 0,15 0,3 0,5 0,7 1 1 ,2 1 ,5 Symbol Conditions ID Tamb = 45 °C; isolated1) chassis2


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PDF R4A/120 P1A/120 SKB 7 04 SKB 7 08 Semikron SKB 25/12 SKB 7 02 Semikron SKB 25/02 Semikron SKB 7 /04 Semikron SKB 7 02 skb 7 12 SKB 7 / 12 Semikron SKB 25 /04
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