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Generalinformation IGBTStackfortypicalvoltagesofupto69VRMS Ratedoutputcurrent8ARMS High power converter Wind power Motor drives PrimePACK TM module with integrated NTC Extended operational temperature Low Vcesat Topology B6I Application Inverter Load type Resistive, inductive Semiconductor (Inverter Section) 9x FFR7IE4 DC Link.8 mf Heatsink Water cooled Implemented sensors Current, voltage, temperature Driver signals IGBT Electrical Sales - name SP - No. SP294 DC Link Inverter Section ~ ~ ~ Signal conditioning & monitor Driver phases Electrical interface dateofpublication:24-2-

Absolutemaximumratedvalues Collector-emitter voltage IGBT; Tvj = 25 C VCES 7 V Repetitive peak reverse voltage Diode; Tvj = 25 C VRRM 7 V DC link voltage VDC 25 V Insulation management according to installation height of 2 m Vline 69 VRMS Insulation test voltage according to EN 578, f = 5 Hz, t = s VISOL 2.5 kvrms Repetitive peak collector current inverter section (IGBT) Repetitive peak forward current inverter section (Diode) Continuous current inverter section tp = ms ICRM2 428 A tp = ms IFRM2 428 A IAC2 8 ARMS Junction temperature under switching conditions Tvjop 5 C Switching frequency inverter section fsw2 khz Notes Further maximum ratings are specified in the following dedicated sections Characteristicvalues DCLink min. typ. max. Rated voltage VDC 26 V Over voltage shutdown within 5 µs 25 V Capacitor s, 27 p, rated tol. ± % CDC.8 mf type Foil Maximum ripple current per device, Tamb = 55 C Iripple 49 ARMS Balance or discharge resistor per DC link unit Rb 5.7 kω Notes Operation above V subject to reduced operating time according to EN 67 InverterSection min. typ. max. Rated continuous current Continuous current at low frequency VDC = V, VAC = 69 VRMS, cos(ϕ) =.85, fac sine = 5 Hz, fsw = Hz, Tinlet = 4 C, Tj 5 C VDC = V, fac sine = Hz, fsw = Hz, Tinlet = 4 C, Tj 5 C IAC 8 ARMS IAC low 88 ARMS Rated continuous current for 5% overload capability Rated continuous current for 5% overload capability IAC 5% = 247 ARMS, ton over = 6 s, Tj 5 C IAC over 65 ARMS IAC 5% = 22 ARMS, ton over = s, Tj 5 C IAC over2 468 ARMS Over current shutdown within 5 µs IAC OC 428 Apeak Power losses IAC = 8 A, VDC = V, VAC = 69 VRMS, cos(ϕ) =.85, fac sine = 5 Hz, fsw = Hz, Tinlet = 4 C, Tj 5 C Ploss 294 W dateofpublication:24-2- 2

Controllerinterface Driver and interface board ref. to separate Application Note DR min. typ. max. Auxiliary voltage Vaux 8 24 V Auxiliary power requirement Vaux = 24 V Paux 4 W Digital input level resistor to GND.8 kω, capacitor to GND 4 nf, logic high = on, min. 5 ma Vin low 4 V Vin high 5 V Digital output level open collector, logic low = no fault, max. 5 ma Vout low.5 V Vout high 5 V Analog current sensor output inverter section load max ma, @ 8 ARMS VIU ana2 VIV ana2 VIW ana2 4. 4.2 4. V Analog DC link voltage sensor output load max ma, @ V VDC ana 7.7 7.9 8. V Analog temperature sensor output inverter section (NTC) Analog temperature sensor output inverter section (Simulated) Over temperature shutdown inverter section load max ma, @TNTC = 62 C, corresponds to Tj = 5 C at rated conditions load max ma, @TNTC = 62 C, corresponds to Tj = 5 C at rated conditions VTheta NTC2 7.2 V VTheta sim2 8.9 V VError OT2 9.2 V Systemdata min. typ. max. EMC robustness according to IEC 68- at named interfaces power control aux (24V) VBurst 2 kv VBurst kv Vsurge kv Storage temperature Tstor -4 8 C Operational ambient temperature PCB, DC link capacitor, bus bar, excluding cooling medium Top amb -25 55 C Cooling air velocity PCB, DC link capacitor, bus bar, standard atmosphere Vair 2 m/s Humidity no condensation Rel. F 95 % Vibration according to IEC 672 5 m/s² Shock according to IEC 672 4 m/s² Protection degree Pollution degree 2 Dimensions width x depth x height 9 596 9 mm Weight 7 kg IP Heatsinkwatercooled min. typ. max. Water flow according to coolant specification from Infineon V/ t 45 dm³/min Water pressure 8 bar Water pressure drop at 45 dm³/min water flow p 2 mbar Coolant inlet temperature Tinlet -4 55 C Thermal resistance heatsink to ambient per switch Rth,ha. K/W Cooling channel material Notes Composition of coolant: Water and 52 vol. % Antifrogen N Aluminum dateofpublication:24-2-

Overviewofoptionalcomponents Parallel interface board Optical interface board Unit (not installed Voltage sensor Current sensor Temperature sensor Temperature simulation DC link capacitors Collector-emitter Active Clamping Notes Setting of Active Clamping TVS-Diodes: VZ = 28 V Inverter Section Unit (not installed) dateofpublication:24-2- 4

fac sine - derating curve IGBT (motor), Diode (generator) VDC = V, VAC = 69 VRMS, fsw = khz, cosϕ = ±.85, Tinlet = 4 C and nom. cooling conditions fsw - derating curve IGBT (motor), Diode (generator) VDC = V, VAC = 69 VRMS, fac sine = 5 Hz, cosϕ = ±.85, Tinlet = 4 C and nom. cooling conditions 2 9 8 2 9 8 IAC/Inom [%] 7 6 5 IAC/Inom [%] 7 6 5 4 4 2 IGBT, cosϕ =.85 Diode, cosϕ = -.85 2 IGBT, cosϕ =.85 Diode, cosϕ = -.85 5 5 2 25 5 4 45 5 fac sine [Hz] 5 2 25 fsw [Hz] Tinlet - derating curve IGBT (motor), Diode (generator) VDC = V, VAC = 69 VRMS, fsw = khz, fac sine = 5 Hz, cosϕ = ±.85 and nom. cooling conditions Analog temperature sensor output VTheta NTC Sensing NTC of IGBT module 2 9 9 8 8 7 IAC/Inom [%] 7 6 5 4 2 IGBT, cosϕ =.85 Diode, cosϕ = -.85 VTheta NTC [V] 6 5 4 2-25 -5-5 5 5 25 5 45 55 Tinlet [ C] 2 4 6 8 TNTC [ C] dateofpublication:24-2- 5

Tvj,sim vs. IAC - Simulated junction temperatur VDC = V, VAC = 69 VRMS, fsw = khz, Tinlet = 4 C and nom. cooling conditions Analog temperature sensor output VTheta sim VDC = V, VAC = 69 VRMS, fsw = khz, nom. cooling conditions 5 4 fac sine = 5 Hz fac sine = 2 Hz fac sine = 5 Hz 9 8 fac sine = 5 Hz fac sine = 2 Hz fac sine = 5 Hz 7 Tvj,sim [ C] 2 VTheta sim [V] 6 5 4 9 2 8 8 2 4 6 8 IAC [A] 8 9 2 4 5 Tvj,sim [ C] Zth,ha - thermal impedance heatsink to ambient per switch nom. cooling conditions.6.2.28.24 Zth,ha [K/W].2.6.2.8.4 i: ri[k/w]: τi[s]:.2.4 2.462.6954.54.457 4.284 6.65.. t [s] dateofpublication:24-2- 6

Mechanicaldrawing dateofpublication:24-2- 7

Technical Information ModSTACK HD Preliminary data Circuit diagram PWM U BOT X2:5 PWM U TOP X2: PWM V BOT TNTC Signal conditioning & Gate signals X2:4 PWM V TOP X2:7 PWM W BOT X2:8 PWM W TOP X2:2, X:5 Phase U Error EiceDRIVERTM X2:4 Top U Bottom X2:6, X:8 Phase V Error X2:5, X:6 Phase W Error X:9 OT Error X:7 OV Error X:7 OC Error X:4 Sum Error Sensor signals EiceDRIVERTM TNTC Failure management X2:, X2:22 GNDdigital X:2, X:4 GNDdigital X4:9, X4:4 GNDdigital X2:8, X2:2 P24 X:, X:5 5V X4:5 5V X4: -5V X: VIU ana X:2 VIV ana X: VIW ana X: VTheta NTC, VTheta sim X:2 VDC ana Top V Bottom EiceDRIVERTM TNTC Power supply Top W Bottom X:24, X:25 GNDanalog X5: Vaux X5:2 GND X5: TE, Shield DC+ DR DC- V-Option Voltage measurement High voltage domain Low voltage domain X2 (male connector) 4 25 X (male connector) 25 8 X4 (male connector) 9 5 SV (jumper) Th Tj Setting X: = VTheta NTC (Sensing NTC of IGBT module) X5 (male connector) Setting X: = VTheta sim (default setting) (Simulated junction temperature) prepared by: OW date of publication: 24-2- approved by: KV revision: 2. 8 ModSTACKTM HD 4

Technical Information ModSTACK HD Preliminary data Terms & Conditions of usage The data contained in this product data sheet is exclusively intended for technically trained staff. You and your technical departments will have to evaluate the suitability of the product for the intended application and the completeness of the product data with respect to such application. This product data sheet is describing the characteristics of this product for which a warranty is granted. Any such warranty is granted exclusively pursuant the terms and conditions of the supply agreement. There will be no guarantee of any kind for the product and its characteristics. Should you require product information in excess of the data given in this product data sheet or which concerns the specific application of our product, please contact the sales office, which is responsible for you (see www.infineon.com, sales&contact). For those that are specifically interested we may provide application notes. Due to technical requirements our product may contain dangerous substances. For information on the types in question please contact the sales office, which is responsible for you. Should you intend to use the Product in aviation applications, in health or live endangering or life support applications, please notify. Please note, that for any such applications we urgently recommend - to perform joint Risk and Quality Assessments; - the conclusion of Quality Agreements; - to establish joint measures of an ongoing product survey, and that we may make delivery depended on the realization of any such measures. If and to the extent necessary, please forward equivalent notices to your customers. Changes of this product data sheet are reserved. Safety Instructions Prior to installation and operation, 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 that missing or damaged signs are replaced. To installation and operation, 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 that missing or damaged signs are replaced. prepared by: OW date of publication: 24-2- approved by: KV revision: 2. 9