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SKS1200FB6C820V16

Semikron International
Part Number SKS1200FB6C820V16
Manufacturer Semikron International
Description Three-phase controlled bridge rectifier
Published Sep 28, 2011
Detailed Description www.DataSheet.co.kr SKS 1200F B6C 820 V16 Characteristics Symbol Id Tamb = 35°C Conditions no overload 150 % overload,...
Datasheet PDF File SKS1200FB6C820V16 PDF File

SKS1200FB6C820V16
SKS1200FB6C820V16


Overview
www.
DataSheet.
co.
kr SKS 1200F B6C 820 V16 Characteristics Symbol Id Tamb = 35°C Conditions no overload 150 % overload, 60s every 10 min.
200 % overload, 60s every 10 min.
min.
typ.
max.
1200 Unit A A A V V V V kA2s kA2s A/µs V/µs V mA Electrical Data 929 821 1394 1643 1600 DC voltage applied to the capacitor bank network voltage (line side), -20% / +15% 50 Hz / 1 min.
Tvj = 25°C Tvj = 125°C SKS 1200F B6C 820 V16 VCES SEMISTACK Thyristor Three-phase controlled bridge rectifier VDC VAC Visol it (di/dt)cr (dv/dt)cr VGT IGT Ptot Rthja Tvj Fuse RC RC Thermal trip dv/dtAIR w Size Tstg Tamb Altitude Protection Pollution Fan Data Fan Type VFan fFAN IFAN PFAN 2 670 500 2500 1125 845 125 1000 3 200 Tvj = 125°C Preliminary Data Features • P17/130 heatsink • Presspack stack with double side cooling • Forced air cooled Tamb = 35°C per component -40 Type ZU (690V) Size 32 Resistance (80W) Capacitance (900Vdc/ 630Vac) normally closed 3091 0.
18 125 800 33 0.
47 95 W K/W °C A Ω µF °C Typical Applications • • • • • • • • Industrial rectifiers Softstarters DC motor control AC controller Trigger unit Current transformer Functional test Dielectric / isolation test Options Mechanical Data m3/h approx.
total weight Width x Depth x Height (with fan) 427 5 5 Installation height w/o derating IP00 EN 50178 included in the stack (YES ) SKF 17A-230-01 Fan voltage Fan frequency Fan current Fan power 230 50 0.
36 83 V Hz A W 2 38 393 558 60 60 1000 kg mm °C °C m No.
08766627 B6C © by SEMIKRON Rev.
2 – 22.
10.
2008 1 Datasheet pdf - http://www.
DataSheet4U.
net/ www.
DataSheet.
co.
kr SKS 1200F B6C 820 V16 Fig.
1 Maximal overload factor vs nom current and ovl duration, Tamb = 35°C Fig.
2 Maximal overload factor vs nom current and ovl duration, Tamb = 45°C Fig.
3 Maximal overload duration vs nom current and ovl factor, Tamb = 35°C Fig.
4 Maximal overload duration vs nom current and ovl factor, Tamb = 45°C Fig.
5 Power losses Fig.
6 Thermal impedance Zth(j-a) 2 Rev.
2 – 22.
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