BUV298V. NPN transistor power module. General features. Applications. Internal schematic diagram. Order codes

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Transcription:

NPN transistor power module General features NPN Transistor High current power bipolar module Very low R th junction case Specific accidental overload areas Fully insulated package (U.L. compliant) for easy mounting Low internal parasitic inductance In compliance with the 2002/93/EC European Directive Pin 4 not connected ISOTOP Applications Motor control SMPS & UPS Welding equipment Internal schematic diagram Order codes Part Number Marking Package Packing ISOTOP Tube November 2006 Rev 3 1/12 www.st.com 12

Contents 1 Electrical ratings............................................ 3 2 Electrical characteristics..................................... 4 2.1 Electrical characteristics (curves)................................ 5 2.2 Test circuits and waveforms.................................... 7 3 Package mechanical data..................................... 9 4 Revision history........................................... 11 2/12

Electrical ratings 1 Electrical ratings Table 1. Absolute maximum rating Symbol Parameter Value Unit V CEV Collector-emitter voltage (V BE = -5V) 850 V V CEO(sus) Collector-emitter voltage (I B = 0) 450 V V EBO Emitter-base voltage (I C = 0) 7 V I C Collector current 50 A I CM Collector peak current (t P < 10ms) 75 A I B Base current 10 A I BM Base peak current (t P < 10ms) 16 A P tot Total dissipation at T c = 25 C 250 W V isol Insulation insulation withstand voltage (RMS) from all four leads to external heatsink 2500 V T stg Storage temperature -65 to 150 C T J Max. operating junction temperature 150 C Table 2. Thermal data Symbol Parameter Value Unit R thj-case Thermal resistance junction-case max R thc-h Thermal resistance case heatsink with conductive grease applied max 0.5 0.05 C/W C/W 3/12

Electrical characteristics 2 Electrical characteristics (T case = 25 C unless otherwise specified) Table 3. Electrical characteristics Symbol Parameter Test Conditions Min. Typ. Max. Unit I CER Collector cut-off current (R BE =5W) V CE =V CEV V CE =V CEV T j =100 C 0.4 2 ma ma I CEV Collector cut-off current (V BE =-5V) V CE =V CEV V CE =V CEV T j =100 C 0.4 2 ma ma I EBO Emitter cut-off current (I C =0) V EB =5V 2 ma V CEO(sus) (1) Collector-emitter sustaining voltage (I B = 0) I C =0.2A V clamp =450V L =25mH 450 V h FE DC current gain I C =32A V CE =5V 12 V CE(sat) (1) Collector-emitter saturation voltage I C =32A I B =6.4A I C =32A I B =6.4A T j =100 C 0.35 0.6 1.2 2 V V V BE(sat) (1) Base-emitter saturation voltage I C =32A I B =6.4A I C =32A I B =6.4A T j =100 C 1 0.9 1.5 1.5 V V di c /dt Rate of rise of On-state collector V CC =300V R C =0 t p =3µs I B1 =9.6A T j =100 C 160 210 A/µs V CE(3µs) Collector-emitter dynamic voltage V CC =300V R C =9.3Ω I B1 =9.6A T j =100 C 4.5 8 V V CE(5µs) Collector-emitter dynamic voltage V CC =300V R C =9.3Ω I B1 =9.6A T j =100 C 2.5 4 V t s t f t c Storage time Fall time Cross-over time I C =32A V CC =50V V BB =-5V R BB =0.39Ω I B1 =6.4A V clamp =450V L =78µH T j =100 C 3.2 0.25 0.5 4.5 0.4 0.7 µs µs µs I CWoff =48A I B1 =6.4A V CEW Maximum collectoremitter voltage without snubber V BB =-5V V CC =50V L =52µH R BB =0.39Ω T j =125 C 450 V Note (1) Pulsed duration = 300µs, duty cycle 1.5% 4/12

Electrical characteristics 2.1 Electrical characteristics (curves) Figure 1. Safe operating area Figure 2. Thermal impedance Figure 3. Derating curves Figure 4. Collector-emitter voltage vs base-emitter resistance Figure 5. Collector-emitter saturation voltage Figure 6. Base-emitter saturation voltage 5/12

Electrical characteristics Figure 7. Reverse biased SOA Figure 8. Forward biased SOA Figure 9. Reverse biased AOA Figure 10. Forward biased AOA Figure 11. Switching times Inductive load Figure 12. Switching times Inductive load vs temperature 6/12

Electrical characteristics Figure 13. DC current gain 2.2 Test circuits and waveforms Figure 14. Turn-on switching test circuit 1) Fast electronic switch 2) Non-inductive resistor Figure 15. Turn-on switching waveforms 7/12

Electrical characteristics Figure 16. Turn-off switching test circuit 1) Fast electronic switch 2) Non-inductive resistor 3) Fast recovery rectifier Figure 17. Turn-off switching waveforms 8/12

Package mechanical data 3 Package mechanical data In order to meet environmental requirements, ST offers these devices in ECOPACK packages. These packages have a Lead-free second level interconnect. The category of second level interconnect is marked on the package and on the inner box label, in compliance with JEDEC Standard JESD97. The maximum ratings related to soldering conditions are also marked on the inner box label. ECOPACK is an ST trademark. ECOPACK specifications are available at: www.st.com 9/12

Package mechanical data ISOTOP MECHANICAL DATA DIM. mm inch MIN. TYP. MAX. MIN. TYP. MAX. A 11.8 12.2 0.465 0.480 A1 8.9 9.1 0.350 0.358 B 7.8 8.2 0.307 0.322 C 0.75 0.85 0.029 0.033 C2 1.95 2.05 0.076 0.080 D 37.8 38.2 1.488 1.503 D1 31.5 31.7 1.240 1.248 E 25.15 25.5 0.990 1.003 E1 23.85 24.15 0.938 0.950 E2 24.8 0.976 G 14.9 15.1 0.586 0.594 G1 12.6 12.8 0.496 0.503 G2 3.5 4.3 0.137 1.169 F 4.1 4.3 0.161 0.169 F1 4.6 5 0.181 0.196 P 4 4.3 0.157 0.169 P1 4 4.4 0.157 0.173 S 30.1 30.3 1.185 1.193 P093A 10/12

Revision history 4 Revision history Table 4. Revision history Date Revision Changes 01-Mar-2003 1 Initial release. 14-Jan-2004 2 Technical migration from ST-press to EDOCS 27-Nov-2006 3 The document has been reformatted 11/12

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