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Turbo 2 ultrafast high voltage rectifier - st.com

October 2016 DocID7976 Rev 12 1/17 This is information on a product in full production. STTH5R06 Turbo 2 ultrafast high voltage rectifier Datasheet - production data Features ultrafast switching Low reverse recovery current Reduces switching losses Low thermal resistance Insulated package: TO-220 FPAC Insulation voltage : 2000 VRMS sine ECOPACK 2 compliant component for DPAK on demand Description The device is developed using ST's Turbo 2 600 V technology. It is well-suited as a boost diode, especially for use in continuous mode power factor corrections and hard switching conditions. This device is also intended for use as a free wheeling diode in power supplies and other power switching applications. Table 1: Device summary Symbol Value IF(AV) 5 A VRRM 600 V Tj (max.) 175 C VF (typ.) V trr (max.) 25 ns KATO-220 ACKAKTO-220 FPACADPAKKKANCANCKKANCD PAKC haracteristics STTH5R06 2/17 DocID7976 Rev 12 1 Characteristics Table 2: Absolute ratings (limiting values at 25 C, unless otherwise specified) Symbol Parameter Value Unit VRRM Repetitive peak reverse voltage 600 V IF(RMS) Forward rms current TO-220AC TO-220 FPAC D PAK 20 A DPAK 10 IF(AV) Average forward current = , square wave TC = 135 C TO-220AC DPAK D PAK 5 A TC = 105 C TO-220 FPAC

Characteristics STTH5R06 4/17 DocID7976 Rev 12 1.1 Characteristics (curves) Figure 1: Conduction losses versus average current 0 Figure 2: Forward voltage drop versus forward

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Transcription of Turbo 2 ultrafast high voltage rectifier - st.com

1 October 2016 DocID7976 Rev 12 1/17 This is information on a product in full production. STTH5R06 Turbo 2 ultrafast high voltage rectifier Datasheet - production data Features ultrafast switching Low reverse recovery current Reduces switching losses Low thermal resistance Insulated package: TO-220 FPAC Insulation voltage : 2000 VRMS sine ECOPACK 2 compliant component for DPAK on demand Description The device is developed using ST's Turbo 2 600 V technology. It is well-suited as a boost diode, especially for use in continuous mode power factor corrections and hard switching conditions. This device is also intended for use as a free wheeling diode in power supplies and other power switching applications. Table 1: Device summary Symbol Value IF(AV) 5 A VRRM 600 V Tj (max.) 175 C VF (typ.) V trr (max.) 25 ns KATO-220 ACKAKTO-220 FPACADPAKKKANCANCKKANCD PAKC haracteristics STTH5R06 2/17 DocID7976 Rev 12 1 Characteristics Table 2: Absolute ratings (limiting values at 25 C, unless otherwise specified) Symbol Parameter Value Unit VRRM Repetitive peak reverse voltage 600 V IF(RMS) Forward rms current TO-220AC TO-220 FPAC D PAK 20 A DPAK 10 IF(AV) Average forward current = , square wave TC = 135 C TO-220AC DPAK D PAK 5 A TC = 105 C TO-220 FPAC IFSM Surge non repetitive forward current tp = 10 ms sinusoidal 50 A Tstg Storage temperature range -65 to +175 C Tj Maximum operating junction temperature 175 C Table 3: Thermal parameter Symbol Parameter Max.

2 Value Unit Rth(j-c) Junction to case TO-220AC / DPAK / D PAK C/W TO-220 FPAC Table 4: Static electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit IR(1) Reverse leakage current Tj = 25 C VR = VRRM - 20 A Tj = 125 C - 25 250 VF(2) Forward voltage drop Tj = 25 C IF = 5 A - V Tj = 125 C - Notes: (1)Pulse test: tp = 5 ms, < 2% (2)Pulse test: tp = 380 s, < 2% To evaluate the conduction losses, use the following equation: P = x IF(AV) + x IF2(RMS) STTH5R06 Characteristics DocID7976 Rev 12 3/17 Table 5: Dynamic electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit trr Reverse recovery time Tj = 25 C IF = A Irr = A IR = 1 A - 25 ns IF = 1 A VR = 30 V dIF/dt = -50 A/ s - 40 IRM Reverse recovery current Tj = 125 C IF = 5 A VR = 400 V dIF/dt = -200 A/ s - A Sfactor Softness factor - - Qrr Reverse recovery charges - 110 nC tfr Forward recovery time Tj = 25 C IF = 5 A VFR = x VF(max.)

3 DIF/dt = 40 A/ s - 150 ns VFP Forward recovery voltage - V Characteristics STTH5R06 4/17 DocID7976 Rev 12 Characteristics (curves) Figure 1: Conduction losses versus average current Figure 2: Forward voltage drop versus forward current Figure 3: Relative variation of thermal impedance junction to case versus pulse duration (TO-220AC, DPAK, D PAK) Figure 4: Relative variation of thermal impedance junction to case versus pulse duration (TO-220 FPAC) Figure 5: Peak reverse recovery current versus dIF/dt (typical values) Figure 6: Reverse recovery time versus dIF/dt (typical values) 01234567891011121301234567P(W)T =tp/Ttp = = = = =1I(A)F(AV) +00T =tp/Ttp = = = (j-c)th(j-c)t(s)pT=tp/Ttp= (j-c)th(j-c)t(s) + +01 024681012141618202202004006008001000I(A) RMdI/dt(A/ s)FI=2xIFF(AV)I=IFF(AV)I= (AV)I= (AV)V=400VT=125 CRj0102030405060708002004006008001000t(n s)rrdI/dt(A/ s)FV=400VT=125 CRjIF=IF(AV)IF=2xIF(AV)IF= (AV)STTH5R06 Characteristics DocID7976 Rev 12 5/17 Figure 7: Reverse recovery charges versus dIF/dt (typical values) Figure 8: Softness factor versus dIF/dt (typical values) Figure 9: Relative variations of dynamic parameters versus junction temperature Figure 10: Transient peak forward voltage versus dIF/dt (typical values) Figure 11: Forward recovery time versus dIF/dt (typical values) Figure 12.

4 Junction capacitance versus reverse voltage applied (typical values) 05010015020025030035002004006008001000Q( nC)rrV=400VT=125 CRjdI/dt(A/ s)FIF= (AV)IF=2xIF(AV)IF=IF(AV) (A/ s)FIF=IF(AV)VR=400 VTj=125 C024681012141618200100200300400500V(V)FP dI/dt(A/ s)FIF=IF(AV)Tj=125 C0204060801001200100200300400500dI/dt(A/ s)FIF=IF(AV)VFR= Ctfr(ns)101001101001000C(pF)V(V)RF=1 MHzVosc=30 VFMSTj=25 CCharacteristics STTH5R06 6/17 DocID7976 Rev 12 Figure 13: Thermal resistance junction to ambient versus copper surface under tab (DPAK) Figure 14: Thermal resistance junction to ambient versus copper surface under tab (D PAK) STTH5R06 Package information DocID7976 Rev 12 7/17 2 Package information In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK packages, depending on their level of environmental compliance.

5 ECOPACK specifications, grade definitions and product status are available at: ECOPACK is an ST trademark. Cooling method: by conduction (C) Epoxy meets UL 94,V0 Recommended torque value: N m (for TO-220 FPAC / TO-220AC) Maximum torque value: N m (for TO-220 FPAC / TO-220AC) TO-220AC package information Figure 15: TO-220AC package outline Package information STTH5R06 8/17 DocID7976 Rev 12 Table 6: TO-220AC package mechanical data Ref. Dimensions Millimeters Inches Min. Max. Min. Max. A C D E F F1 G H2 L2 typ. typ. L4 L5 L6 L7 L9 M typ. typ. Diam STTH5R06 Package information DocID7976 Rev 12 9/17 TO-220 FPAC package information Figure 16: TO-220 FPAC package outline HABDiaL7L6L5F1 FDEL4G1GL2L3 Package information STTH5R06 10/17 DocID7976 Rev 12 Table 7: TO-220 FPAC package mechanical data Ref.

6 Dimensions Millimeters Inches Min. Max. Min. Max. A B D E F F1 G G1 H L2 typ. typ. L3 L4 L5 L6 L7 Dia. STTH5R06 Package information DocID7976 Rev 12 11/17 DPAK package information Figure 17: DPAK package outline This package drawing may slightly differ from the physical package. However, all the specified dimensions are guaranteed. Package information STTH5R06 12/17 DocID7976 Rev 12 Table 8: DPAK package mechanical data Ref. Dimensions Millimeters Inches Min. Max. Min. Max. A A1 A2 b b4 c c2 D D1 E E1 e typ. typ. e1 H L L2 L4 V2 -8 +8 -8 +8 Figure 18: DPAK recommended footprint (dimensions in mm) STTH5R06 Package information DocID7976 Rev 12 13/17 D PAK package information Figure 19: D PAK package outline Package information STTH5R06 14/17 DocID7976 Rev 12 Table 9: D PAK package mechanical data Ref.

7 Dimensions Millimeters Inches Min. Typ. Max. Min. Typ. Max. A A1 b b2 c c2 D D1 D2 E 10 E1 E2 e e1 H 15 J1 L L1 L2 R V2 0 8 0 8 STTH5R06 Package information DocID7976 Rev 12 15/17 Figure 20: D PAK recommended footprint (dimensions are in mm) Ordering information STTH5R06 16/17 DocID7976 Rev 12 3 Ordering information Table 10: Ordering information Order code Marking Package Weight Base qty. Delivery mode STTH5R06D STTH5R06D TO-220AC g 50 Tube STTH5R06G-TR STTH5R06G D PAK g 1000 Tape and reel STTH5R06FP STTH5R06FP TO-220 FPAC g 50 Tube STTH5R06B STTH5 R06B DPAK g 75 Tube STTH5R06B-TR STTH5 R06B DPAK g 2500 Tape and reel 4 Revision history Table 11: Document revision history Date Revision Changes 17-Feb-2011 9 Last issue.

8 01-Aug-2014 10 Added insulated package text in Features. Corrected typographical errors in Table 10. Updated TO-220 FPAC, D2 PAK and DPAK package information and reformatted to current standard. 18-Sep-2014 11 Updated Figure 18, Figure 19 and Table 4. 19-Oct-2016 12 Updated DPAK package information and reformatted to current standard. STTH5R06 DocID7976 Rev 12 17/17 IMPORTANT NOTICE PLEASE READ CAREFULLY STMicroelectronics NV and its subsidiaries ( ST ) reserve the right to make changes, corrections, enhancements, modifications, and improvements to ST products and/or to this document at any time without notice. Purchasers should obtain the latest relevant information on ST products before placing orders. ST products are sold pursuant to ST s terms and conditions of sale in place at the time of order acknowledgement. Purchasers are solely responsible for the choice, selection, and use of ST products and ST assumes no liability for application assistance or the design of Purchasers products.

9 No license, express or implied, to any intellectual property right is granted by ST herein. Resale of ST products with provisions different from the information set forth herein shall void any warranty granted by ST for such product. ST and the ST logo are trademarks of ST. All other product or service names are the property of their respective owners. Information in this document supersedes and replaces information previously supplied in any prior versions of this document. 2016 STMicroelectronics All rights reserved


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