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Provisional Data Sheet. Type E2400EC45E Issue A1 Page 1 of 9 May, 2017 Date:- 8 May 2017 Data Sheet Issue: A1 High Power Sonic FRD Type E2400EC45E Absolute Maximum Ratings VOLTAGE RATINGS MAXIMUM LIMITS UNITS VRRM Repetitive peak reverse voltage, (note 1) 4500 V VRSM Non-repetitive peak reverse voltage, (note 1) 4600 V VR(d.c.) Maximum reverse d.c. voltage (note 1) 2800 V OTHER RATINGS (note 6) MAXIMUM LIMITS UNITS IF(AV)M Mean forward current, Tsink=55°C, (note 2) 2490 A IF(AV)M Mean forward current. Tsink=100°C, (note 2) 1555 A IF(AV)M Mean forward current. Tsink=100°C, (note 3) 1045 A IF(AV)M Mean forward current. Tsink=100°C, (note 4) 890 A IF(RMS) Nominal RMS forward current, Tsink=25°C, (note 2) 4690 A IF(d.c.) D.C. forward current, Tsink=25°C, (note 5) 4235 A IFSM Peak non-repetitive surge tp=10ms, VRM=60%VRRM, (note 6) 32.1 kA IFSM2 Peak non-repetitive surge tp=10ms, VRM10V, (note 6) 35.3 kA I2t I2t capacity for fusing tp=10ms, VRM=60%VRRM, (note 6) 5.15×106 A2s I2t I2t capacity for fusing tp=10ms, VRM10V, (note 6) 6.23×106 A2s Prr Maximum non-repetitive peak reverse recovery power, (note 8) 13.5 MW Tj op Operating temperature range -40 to +140 °C Tstg Storage temperature range -40 to +150 °C Notes:- 1) De-rating factor of 0.13% per °C is applicable for T j below 25°C. 2) Double side cooled, single phase; 50Hz, 180° half -sinewave. 3) Anode side cooled, single phase; 50Hz, 180° half-sinewave. 4) Cathode side cooled, single phase; 50Hz, 180° half -sinewave. 5) Double side cooled. 6) Half-sinewave, 140°C Tj initial. 7) Current (IF) ratings have been calculated using VT0 and rT (see page 2) 8) Tj=Tjop, I F=2400A, di/dt=4000A/µs V r=2800V and L s=200nH. Test circuit and sample waveform are shown in diagram 1. IGBT type T2400GB45E used as switch.
High Power Sonic FRD Type E2400EC45E Provisional Data Sheet. Type E2400EC45E Issue A1 Page 2 of 9 May, 2017 Characteristics PARAMETER MIN. TYP. MAX. TEST CONDITIONS (Note 1) UNITS VFM Maximum peak forward voltage - 3.40 3.65 IFM=2400A V - - 5.34 IFM=4800A VT0 Threshold voltage - - 2.114 Current range 2490A - 7470A (Note 2) V rT Slope resistance - - 0.646 m VT01 Threshold voltage - - 2.084 Current range 2400A - 7200A V rT1 Slope resistance - - 0.653 m VFRM Maximum forward recovery voltage - - 230 di/dt = 4000A/µs V - - 115 di/dt = 4000A/µs, Tj=25°C IRRM Peak reverse current - - 100 Rated VRRM mA - - 2 Rated VRRM, Tj=25°C Qrr Recovered charge - 3900 4350 IFM=2400A, tp=1ms, di/dt=4000A/µs, Vr=2800V, 50% Chord (note 3) µC Qra Recovered charge, 50% Chord - 1300 - µC Irm Reverse recovery current - 2130 2350 A trr Reverse recovery time, 50% Chord - 1.22 - µs Err Reverse recovery energy loss - 7.2 8 J RthJK Thermal resistance, junction to heatsink - - 0.0056 Double side cooled K/W - - 0.0101 Anode side cooled K/W - 0.0127 Cathode side cooled F Mounting force 60 - 75 (Note 4) kN Wt Weight - 1.23 - kg Notes:- 1) Unless otherwise indicated Tj=140°C. 2) VT0 and rT were used to calculate the current ratings illustrated on page one. 3) Figures 3-7 were compiled using these conditions. Test circuit and sample waveform are shown in diagram 1. 4) For clamp forces outside these limits, please consult factory.
High Power Sonic FRD Type E2400EC45E Provisional Data Sheet. Type E2400EC45E Issue A1 Page 3 of 9 May, 2017 Additional information on Ratings and Characteristics
1.0 De-rating Factor
A blocking voltage de-rating factor of 0.13% per °C is applicable to this device for Tj below 25°C.
2.0 ABCD Constants
These constants (applicable only over current range of VF characteristic in Figure 1) are the coefficients of the expression for the forward characteristic given below: where IF = instantaneous forward current.
3.0 Reverse recovery ratings
Diagram 1 – Reverse Recovery test circuit and sample waveform IG LS D.U.T (i) Qra is based on 50% Irm chord as shown in Figure below. (ii) Qrr is based on a 20s integration time. I.e. s rrrr dtiQ 20 (iii) 1 t tFactorK
High Power Sonic FRD Type E2400EC45E Provisional Data Sheet. Type E2400EC45E Issue A1 Page 4 of 9 May, 2017
4.0 Reverse Recovery Loss
The following procedure is recommended for use where it is necessary to include reverse recovery loss. From waveforms of recovery current obtained from a high frequency shunt (see Note 1) and reverse voltage present during recovery, an instantaneous reverse recovery loss waveform must be constructed. Let the area under this waveform be E joules per pulse. A new sink temperature can then be evaluated from: Where k = 0.2314 (°C/W)/s E = Area under reverse loss waveform per pulse in joules (W.s.) f = Rated frequency in Hz at the original sink temperature. Rth(J-Hs) = d.c. thermal resistance (°C/W) The total dissipation is now given by: fEWW originaltot )()( NOTE 1 - Reverse Recovery Loss by Measurement This device has a low reverse recovered charge and peak reverse recovery current. When measuring the charge, care must be taken to ensure that: (a) AC coupled devices such as current transformers are not affected by prior passage of high amplitude forward current. (b) A suitable, polarised, clipping circuit must be connected to the input of the measuring oscilloscope to avoid overloading the internal amplifiers by the relatively high amplitude forward current signal. (c) Measurement of reverse recovery waveform should be carried out with an appropriate critically damped snubber, connected across diode anode to cathode. The formula used for the calculation of this snubber is shown below: dtdiC VR s r 42 Where: Vr = Commutating source voltage CS = Snubber capacitance R = Snubber resistance
5.0 Computer Modelling Parameters
5.1 Device Dissipation Calculations
T AVTTT AV rff WrffVVI Where VT0 =2.114V, rT =0.646m
High Power Sonic FRD Type E2400EC45E Provisional Data Sheet. Type E2400EC45E Issue A1 Page 5 of 9 May, 2017 ff = form factor (normally unity for fast diode applications) KMAXj th AV TTT R TW
5.2 Calculation of VF using ABCD Coefficients
The forward characteristic IF Vs VF, on page 6 is represented in two ways; (i) the well established VT0 and rT tangent used for rating purposes and ((iiii)) a set of constants A, B, C, and D forming the coefficients of the representative equation for VF in terms of IF given below: The constants, derived by curve fitting software, are given in this report for both hot and cold characteristics. The resulting values for VF agree with the true device characteristic over a current range, which is limited to that plotted. 25°C Coefficients 140°C Coefficients A 0.2094065 0.2457206 B 0.1752902 0.04513215 C 0.2723111×10-3 0.2789414×10-3 D 0.03622895 0.04866113
High Power Sonic FRD Type E2400EC45E Provisional Data Sheet. Type E2400EC45E Issue A1 Page 9 of 9 May, 2017 Outline Drawing & Ordering Information 100A386 ORDERING INFORMATION (Please quote 10 digit code as below) E2400 EC 45 E Fixed Type Code Fixed outline code Fixed voltage code VRRM/100 Fixed code, product series Order code: E2400EC45E – 4500V VRRM, 26mm clamp height capsule. IXYS Semiconductor GmbH Edisonstraße 15 D-68623 Lampertheim Tel: +49 6206 503-0 Fax: +49 6206 503-627 E-mail: marcom@ixys.de IXYS UK Westcode Ltd Langley Park Way, Langley Park, Chippenham, Wiltshire, SN15 1GE. Tel: +44 (0)1249 444524 Fax: +44 (0)1249 659448 E-mail: sales@ixysuk.com IXYS Corporation
1590 Buckeye Drive
Tel: +1 (408) 457 9000 Fax: +1 (408) 496 0670 E-mail: sales@ixys.net www.ixysuk.com www.ixys.net IXYS Long Beach IXYS Long Beach, Inc
2500 Mira Mar Ave, Long Beach
Tel: +1 (562) 296 6584 Fax: +1 (562) 296 6585 E-mail: service@ixyslongbeach.com The information contained herein is confident ial and is protected by Copyright. The information may not be used or disclosed except with the written permission of and in the manner permitted by the proprietors IXYS UK Westcode Ltd. In the interest of product improvement, IXYS UK Westcode Ltd reserve s the right to change specifications at any time without prior notice. Devices with a suffix code (2-letter, 3-letter or letter/digit/letter combination) added to their generic code are not necessarily subject to the conditions and limits contained in thi s report. © IXYS UK Westcode Ltd.