AEC-Q101 qualified. High junction temperature capability Ultrafast with soft recovery behavior Low reverse current
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1 Datasheet utomotive turbo 2 ultrafast high voltage rectifier Features K K K EC-Q101 qualified D²PK K NC D²PK HV NC High junction temperature capability Ultrafast with soft recovery behavior Low reverse current K Low thermal resistance Reduce switching and conduction losses DO-247 K K TO-220C PPP capable D²PK HV creepage distance (anode to cathode) = 5.38 mm min. (with top coating) V RRM guaranteed from -40 C to 175 C ECOPCK 2 compliant (DO-247, TO-220C) pplications Product status link STTH30RQ06-Y Product summary Output rectification PFC UPS ir conditioning Charging station Description The STTH30RQ06-Y has been developed to be used in application requiring a highvoltage secondary rectification for LLC Full Bridge topology. I F(V) V RRM V F (typ.) t rr (max.) V 1.45 V 30 ns It is also suited for use in switching power supplies and automotive applications, industrial applications, as rectification, freewheeling and clamping diode. T j -40 C to +175 C DS Rev 3 - November 2018 For further information contact your local STMicroelectronics sales office.
2 Characteristics 1 Characteristics Table 1. bsolute ratings (limiting values, at 25 C, unless otherwise specified) Symbol Parameter Value Unit V RRM Repetitive peak reverse voltage T j = -40 C to +175 C 600 V I F(RMS) Forward rms current 50 I F(V) verage forward current δ = 0.5, square wave T C = 125 C 30 I FSM Surge non repetitive forward current t p = 10 ms sinusoidal D²PK, D²PK HV 180 TO-220C, DO T stg Storage temperature range -65 to +175 C T j Operating junction temperature range -40 to +175 C Table 2. Thermal parameters Symbol Parameter Max. value Unit R th(j-c) Junction to case 0.7 C/W Table 3. Static electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit I R (1) Reverse leakage current T j = 25 C - 40 V R = V RRM T j = 150 C µ V F (2) Forward voltage drop T j = 25 C I F = 15 T j = 150 C T j = 25 C I F = 30 T j = 150 C V 1. Pulse test: t p = 5 ms, δ < 2% 2. Pulse test: t p = 380 µs, δ < 2% To evaluate the conduction losses, use the following equation: P = 1.05 x I F(V) x I 2 F (RMS) Table 4. Dynamic electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit t rr Reverse recovery time T j = 25 C I F = 0.5, I R = 1, I rr = I F = 1, V R = 30 V, dl F /dt = -50 /µs ns I RM Reverse recovery current Q RR Reverse recovery charge T j = 125 C I F = 30, V R = 400 V, dl F /dt = -200 /µs nc t rr Reverse recovery time - 95 ns DS Rev 3 page 2/17
3 Characteristics (curves) For more information, please refer to the following application notes related to the power losses: N604: Calculation of conduction losses in a power rectifier N4021: Calculation of reverse losses in a power diode 1.1 Characteristics (curves) Figure 1. verage forward power dissipation versus average forward current (square waveform) Figure 2. verage forward power dissipation versus average forward current (sinusoidal waveform) P (W) F( V ) δ = 0.05 δ = 0.1 δ = 0.2 δ = 0.5 δ = P (W) F( V ) δ = 0.05 δ = 0.1 δ = 0.2 δ = 0.5 δ = I F( V ) T δ=tp/t tp () 20 0 I F( V ) () Figure 3. Forward voltage drop versus forward current (typical values) Figure 4. Forward voltage drop versus forward current (maximum values) I F () T j J =150 C 175 C I F () T j J =150 C 175 C 10.0 T j J =150 C T j J =150 C 25 C 10.0 T j J =150 C T j J =150 C 25 C 1.0 T J j =150 C T J j =150 C V F (V) V F (V) DS Rev 3 page 3/17
4 Characteristics (curves) Figure 5. Relative variation of thermal impedance junction to case versus pulse duration Figure 6. Peak reverse recovery current versus di F /dt (typical values) Z th(j-c) /Rt h(j-c) Single pulse I RM () V R = 400 V T j = 125 C I F = I F = I F = t ( s ) p 1.E-04 1.E-03 1.E-02 1.E-01 1.E+00 di F / dt(/ µs) Figure 7. Reverse recovery time versus di F /dt (typical values) Figure 8. Reverse recovery charges versus di F /dt (typical values) t RR (ns) I F = 30 V R = 400 V T j = 125 C Q RR (nc) V R = 400 V T j = 125 C I F = 30 I F = I F = I F = 7.5 di F /dt(/µs) I F = di F /dt(/µs) Figure 9. Reverse recovery softness factor versus di F /dt (typical values) Figure 10. Relative variations of dynamic parameters versus junction temperature S factor V R = 400 V T j = 125 C I F = I F(V) V R = 400 V Reference :T j = 125 C S FCTOR I RM 0.4 di F /dt(/µs) Q RR T j ( C) DS Rev 3 page 4/17
5 Characteristics (curves) Figure 11. Junction capacitance versus reverse voltage applied (typical values) Figure 12. Thermal resistance junction to ambient versus copper surface under tab (typical values, epoxy printed board FR4, e Cu = 35 µm)(d²pk and D²PK HV) C(pF) 1000 F=1MHz V OSC =30mV RMS T j =25 C R th(j-a) ( C/W) V R (V) S Cu (cm²) Figure 13. Relative variation of non-repetitive peak surge forward current versus pulse duration (sinusoidal waveform) Figure 14. Relative variation of non-repetitive peak surge forward current versus initial junction temperature (sinusoidal waveform) I FSM (tp) / I FSM (10 ms) 4.0 I FSM (Tj) / I FSM (25 C) t p (ms) T j ( C) DS Rev 3 page 5/17
6 Package information 2 Package information In order to meet environmental requirements, ST offers these devices in different grades of ECOPCK packages, depending on their level of environmental compliance. ECOPCK specifications, grade definitions and product status are available at: ECOPCK is an ST trademark. 2.1 DO-247 package information Epoxy meets UL94, V0 Cooling method: by conduction (C) Recommended torque value: 0.8 N m (DO-247) Maximum torque value: 1.0 N m (DO-247) Figure 15. DO-247 package outline V V Dia H 0.10 L5 L L2 L4 F2 L1 L3 V2 F3 D F G M E DS Rev 3 page 6/17
7 DO-247 package information Ref. Table 5. DO-247 package mechanical data Millimeters Dimensions Inches Min. Max. Min. Max D E F F typ typ. F G typ typ. H L L L typ typ. L L typ typ. L typ typ. M V 5 5 V Dia DS Rev 3 page 7/17
8 D²PK package information 2.2 D²PK package information Epoxy meets UL94, V0. Cooling method: by conduction (C) Figure 16. D²PK package outline DS Rev 3 page 8/17
9 D²PK package information Ref. Table 6. D²PK package mechanical data Millimeters Dimensions Inches (for reference only) Min. Typ. Max. Min. Typ. Max b b c c D D D E E E e e H J L L L R V Figure 17. D²PK recommended footprint (dimensions are in mm) Footprint DS Rev 3 page 9/17
10 TO-220C package information 2.3 TO-220C package information Epoxy meets UL 94,V0 Cooling method: by conduction (C) Recommended torque value: 0.55 N m Maximum torque value: 0.70 N m Figure 18. TO-220C package outline Gate note (1)(2) H2 Ø I L C L7 L6 L2 F1 L9 D Gate note (1)(2) L4 F M G E (1) : Max resin gate protusion 0.5 mm (2) : Resin gate position is accepted in each of the two positions shown on the drawings or their symmetrical DS Rev 3 page 10/17
11 TO-220C package information Table 7. TO-220C package mechanical data Dimensions Ref. Millimeters Inches (for reference only) Min. Max. Min. Max C D E F F G H L typ typ. L L L L L M 2.60 typ typ. Diam DS Rev 3 page 11/17
12 D²PK high voltage package information 2.4 D²PK HV package information Figure 19. D²PK high voltage package outline H C L1 L L4 R M R L2 e F (x2) 0.25 gauge plane E H1 L3 1 V DS Rev 3 page 12/17
13 D²PK high voltage package information Table 8. D²PK high voltage package mechanical data Ref. Dimensions Min. Typ. Max C e E F H H L L L L L M R V 0 8 Figure 20. D²PK High Voltage footprint in mm 10,58 7,46 5,10 15,95 3,40 1,20 5,08 DS Rev 3 page 13/17
14 D²PK high voltage package information Creepage distance between anode and cathode Table 9. Creepage distance between anode and cathode Symbol Parameter Value Unit Cd -K1 Minimum creepage distance between and K1 (with top coating) 5.38 D²PK HV Cd -K2 Minimum creepage distance between and K2 (without top coating) 3.48 mm Note: D²PK HV creepage distance (anode to cathode) = 5.38 mm min. (refer to IEC ) Figure 21. Creepage with top coating Figure 22. Creepage without top coating DS Rev 3 page 14/17
15 Ordering information 3 Ordering information Table 10. Ordering information Order code Marking Package Weight Base qty. Delivery mode STTH30RQ06GY-TR STTH30RQ06GY D²PK 1.48 g 1000 Tape and reel STTH30RQ06DY STTH30RQ06DY TO-220C 1.86 g 50 Tube STTH30RQ06WY STTH30RQ06WY DO g 30 Tube STTH30RQ06G2Y-TR TH30RQ06G2Y D²PK HV 1.48 g 1000 Tape and reel DS Rev 3 page 15/17
16 Revision history Table 11. Document revision history Date Revision Changes 12-Jun Initial release. 09-Oct dded D²PK HV package. 20-Nov Updated Features and Table 9. Creepage distance between anode and cathode. added Figure 22. Creepage without top coating. DS Rev 3 page 16/17
17 IMPORTNT NOTICE PLESE RED CREFULLY 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. 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. ll 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 STMicroelectronics ll rights reserved DS Rev 3 page 17/17
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