B6IB6I690 EUPEC | Alldatasheet
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Datasheet: B6I+B6I 690/1100-300G M, S Preliminary Data B6I+B6I690-1100-300G.doc 1 of 10 2004-10-28 Key Data 3 x 277A AC at 690V AC, aircooled General Information Stack with IGBT, heatsinks, capacitors, drivers and sensors for several inverter applications. These are only technical data! Please read heedful the complete documentation and attend the adopted design environment! Especially the EMC environment and the controller functionality. Topology B6I + DC Link + B6I Load Type Resistive, inductive load Cooling Forced air, fan excluded Targed Application Wind Extra Available in Master [M] or Slave [S] Configuration. Also available with 20ms Shorttime Overload at Unit 2 [TSSa] Opt. Resistors for Sinewavefilters Drivercore Scale Driver Monitors Current-, Voltage-, Temperature-Monitoring Module (Unit1) IGBT 3x FF600R17KF6C Module (Unit2) IGBT 3x FF800R17KF6C Interface Electrica l, opt. optical Standards EN50178, UL94, prepared for UL508C Product ID (eupec) Master 22902 Slave 22903 Master [TSSa] 24255 Slave [TSSa] 24256 Drawing No. 37001450MB [mit TSSa] 37001637MB Circuit Diagram No. 57000001 Unit1 (LSC) Unit2 (MSC) Electrical Data Parameter Min Typ Max Assumed Linevoltage For Isolation- Management VLine 690 V RMS DC Link Voltage VDC 1100 1219 V av DC Link Overvoltage Shutdown Within 100µs V DCmax V DC Link Current IDCLink - A DC
Datasheet: B6I+B6I 690/1100-300G M, S Preliminary Data B6I+B6I690-1100-300G.doc 2 of 10 2004-10-28 Voltage Unit1 VUnit1 690 V RMS Continious Current Unit1 ϑ=ϑair_inlet IUnit1 170 A RMS Shorttime Current Unit1 10s, every 180s, initial load = IUnit1 IUnit1_10 210 A RMS Pulse Current Unit1 Sinehalfwave 20ms - A peak DC Current at Unit1 No rotating field, ϑ=ϑair_inlet, IUnit1_DC 0,4* IUnit1 Aav Overcurrent Shutdown Unit1 Percentage of IUnit1. Within 15µs 150 % Switching Freq. Unit1 fsw1 2250 Hz Power Losses Unit1 V =Vunit1_min, I=IUnit1, fsw=fsw1 Ploss1 2319 W Voltage Unit2 Depending on Controller VUnit2 690 V RMS Continious Current Unit2 ϑ=ϑair_inlet, ϑchip <= 125°C fUnit2>5Hz IUnit2 277 A RMS Shorttime Current Unit2 ϑair_inlet<=40°C, 10s, every 180s, initial load = IUnit2 IUnit2_10 327 A RMS Pulse Current Unit2 Sinehalfwave 20ms, starting from IUnit2. Only [TSS] Version IUnit2peak 1250 A peak DC Current at Unit2 No rotating field, ϑ=ϑair_inlet, IUnit2_DC 0,4* IUnit2 ADC Percentage of IUnit2. Within 15µs Basic Version 150 % Overcurrent Shutdown Unit2 Only [TSS] Version 320 % Switching Freq. Unit2 fsw2 2250 Hz Power Losses Unit2 I=IUnit2, fsw=fsw2 Ploss2 3544 W Power Losses (PCB and Capacitor) Ploss_aux 400 W RFilter 22 Ohm Filterresistors at Output Unit2 Applicable for Sinewavefilters (damping) only in Produkt ID 24255 and 24256 PRFilter 100 Watt Auxiliary Voltage Vaux 18 24 30 V av Auxiliary Power Demand Vaux=24 Vav, to feed with B6U Paux 80 W Power VBurst 2 kV Control VBurst 1 EMC Test According EN61800-3 at named interfaces Aux (24V) VSurge 1 kV
Datasheet: B6I+B6I 690/1100-300G M, S Preliminary Data B6I+B6I690-1100-300G.doc 3 of 10 2004-10-28 Insulation Test Voltage According EN50178 f=50Hz, t=1min Visol 1,8 kV RMS Important Component Data DC Link Capacitor C DC 12,53 mF DC Link Capacitor Type Elcap Loadcycle: Wind LTD 17 Year Loadcycle: Solar LTD - Year Capacitor Design Lifetime (eupec approximation) Loadcycle: Industrial LTD - Year Requirements to the Powersource Assumed Inductance Of Feeding Powersource (Necessary inductance not included, feeded by B6U) LFeed 292 µH Fan Data (assumed when excluded) Fan Type Assumed QK10A-2DM.68.FK Fan Voltage V Fan 400 V RMS Fan Frequency f Fan 50 Hz Fan Current I Fan 1,42 A RMS Fan Air Pressure Assumed ∆pAirFan 170 Pa Controller Interface Data Master Basic Version TR100 Master [TSS] Version TR101 Slave Driver See Datasheets PCB TR100 Master SAD101 Slave Paralleling Interface See Datasheet PCB Master OEA101 Slave Optical Interface See Datasheet PCB Digital Input Level Resistor to Gnd (1,8k) High = on min 15mA Vin 0 15 V Digital Output Level Open collector Low = ok max 15mA Vout 0 15 V Analog Current Outputs Unit1 Load max 1mA at IUnit1 2,27 V Load max 1mA at IUnit2 Basic Version
4 V Analog Current
[TSS] Version 2 V Analog DC Link Voltage Output Load max 1 mA At VDCmax VDCout 9 V
Datasheet: B6I+B6I 690/1100-300G M, S Preliminary Data B6I+B6I690-1100-300G.doc 4 of 10 2004-10-28 Analog Temperature Out Load max 1mA At ϑj=125°C Vϑout 9 V Optical Input Level optionally 12 µW Optical Output Level optionally 60 µW Requirements to the Controller EMC Protection According EN61800-3 at auxiliary power and controlinterface 1 kV EMC Environment Shieldconcept with TE (True Earth) separated from PE, HF conform installation Drive Pulse Time ton_min 10 µs Blockout Time tpause 10 µs Overvoltage Shut Down Reaction Time After overvoltage message by ModSTACK Interface 50 µs Overcurrent Shut Down Reaction Time After overcurrent message by ModSTACK Interface 10 µs Mechanical Data Airvelocity v Air 6 m/s Airflow heatsink d V/dtAir 1600 m³/h Air Pressure Drop heatsink ϑAir=20°C Pair=1013 hPa Dry- and dustfree, measured outside of heatsink. According DIN 41882 ∆pAir 170 Pa Watervelocity v Water m/s Waterflow heatsink d V/dt Water - m³/h Water Pressure Drop heatsink According Coolingwater Specification from eupec ∆pWater - Pa Dimensions Width x Depth x Hight 1090 596 345 mm Mass Approximation 101 kg Storage Temperature Range ϑstor -40 +65 °C Operating Temperature range (PCB and Capacitor) Minimal 0 °C for optional optical interface ϑop -25 (0) +55 °C -25 Cooling Air Inlet Temperature (Heatsink) Heatsink temperature > -25°C ϑair_inlet -40 +40 °C Cooling Airvelocity (PCB and Capacitor) vAir_PCB 2 m/s Air Pressure Standard atmosphere pAir 900 1100 hPa Humidity No Condensation Rel. F 0 95 %
Datasheet: B6I+B6I 690/1100-300G M, S Preliminary Data B6I+B6I690-1100-300G.doc 5 of 10 2004-10-28 Installation Height 0 1000 m Vibration EN60068-2-6, Fc 10..59Hz 0,075mm 10 m/s² Permanence Vibration EN60068-2-6, Fc 10-150Hz, 20 Cycles 20 m/s² Shock EN60068-2-27, Ea Halfsine 11ms, 3 pulses 100 m/s² Protection Degree IP00 Pollution Degree 2 Overvoltage Category III
Datasheet: B6I+B6I 690/1100-300G M, S Preliminary Data B6I+B6I690-1100-300G.doc 6 of 10 2004-10-28 Derating Curves (IGBT Part) Current derating at low rotating field frequency (f0). Maximal 100% current is allowed. cos(phi) = -0.64, (generator) Theta_air = 40°C 100 120 -5 0 5 10 15 20 25 30 35 40 45 50 55 f0 [Hz] I/I_nom [%] cos(phi) = 0.64, (motor) Theta_air = 40°C 100 120 -5 0 5 10 15 20 25 30 35 40 45 50 55 f0 [Hz] I/I_nom [%]
Datasheet: B6I+B6I 690/1100-300G M, S Preliminary Data B6I+B6I690-1100-300G.doc 7 of 10 2004-10-28 Current derating at different switching frequencies. See datatable for nominal switching frequency. In this drawing 2500Hz ist assumed. Maximal 100% current is allowed. IGBT, cos(phi) = 0.64 Theta_air = 40°C 100 120 140 160 180 0 1000 2000 3000 4000 5000 6000 7000 fsw [Hz] I/I_nom [%] FF 400 R12 KL4C FF 800 R17 KF6CB2 FF 1200 R17 KE3 Diode, cos(phi) = 0.64 Theta_air = 40°C 100 120 140 160 180 200 0 1000 2000 3000 4000 5000 6000 7000 fsw [Hz] I/I_nom [%] FF 400 R12 KL4C FF 800 R17 KF6CB2 FF 1200 R17 KE3
Datasheet: B6I+B6I 690/1100-300G M, S Preliminary Data B6I+B6I690-1100-300G.doc 8 of 10 2004-10-28 IGBT, cos(phi) = - 0.64 Theta_air = 40°C 100 120 140 160 180 0 1000 2000 3000 4000 5000 6000 7000 fsw [Hz] I/I_nom [%] FF 400 R12 KL4C FF 800 R17 KF6CB2 FF 1200 R17 KE3 Diode, cos(phi) = -0.64 Theta_air = 40°C 100 120 140 160 180 0 1000 2000 3000 4000 5000 6000 7000 fsw [Hz] I/I_nom [%] FF 400 R12 KL4C FF 800 R17 KF6CB2 FF 1200 R17 KE3
Datasheet: B6I+B6I 690/1100-300G M, S Preliminary Data B6I+B6I690-1100-300G.doc 9 of 10 2004-10-28 Miscellaneous This technical information specifies semiconductor stacks but promises no characteristics. It is valid in combination with the belonging technical notes. This document may be changed without prior notice. Warning! Prior to installation and commissioning all safety notices and warnings and all warning signs attached to the equipment have to be carefully read. Make sure that all warning signs remain in a legible condition and missing or damaged signs are replaced. The safety instructions have to be strictly adhered to. The manual contains detailed information on all technical topics with regard to the eupec ModSTACK. For further detail s regarding public ations of the eu pec ModSTACK and information on other publications in the area of ModSTACKs please contact your nearest eupec branch or visit our website: http://www.eupec.com. eupec GmbH 2004. All rights reserved Prepared by J.Schiele 2003-04- 01 Date of publication Approved by 2003-04-01 Revision 0.2-04-10-28
ModSTACK B6I+B6I 690/1100-300G M, S, Drawing, Preliminary Data B6I+B6I690-1100-300G.doc 10 of 10 2004-10-28