Datasheet HVLED001B (STMicroelectronics) - 8

ManufacturerSTMicroelectronics
DescriptionDS12748: High power factor flyback controller with constant voltage primary-sensing and ultra-low standby consumption
Pages / Page33 / 8 — Electrical data. HVLED001B. 4.1. Absolute maximum ratings. Table 3. …
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Electrical data. HVLED001B. 4.1. Absolute maximum ratings. Table 3. Absolute maximum ratings. Symbol. Pin. Parameter. Test condition. Min

Electrical data HVLED001B 4.1 Absolute maximum ratings Table 3 Absolute maximum ratings Symbol Pin Parameter Test condition Min

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Electrical data HVLED001B 4 Electrical data 4.1 Absolute maximum ratings Table 3. Absolute maximum ratings Symbol Pin Parameter Test condition Min. Max. Unit
IHVSU < 100 μA, DC VHVSU,bd HVSU HVSU breakdown voltage 800 - V VCC = 15 V VHVSU,neg HVSU HVSU negative voltage IHVSU source < 2 mA - 0.3 - V VGD GD Maximum swing voltage - 0.3 VCC V Current sense applied VCS CS - 0.3 7 V voltage - 7 V VZCD ZCD ZCD pin voltage Negative, Isource < 1 mA - 0.3 - V VFB FB FB voltage - 0.3 3.6 V VOPTO OPTO OPTO voltage Stop mode - 0.3 3.6 V VCC, MAX. VCC IC supply voltage - 18 V VTOFF TOFF Maximum applied voltage - 0.3 7 V Note: Where not otherwise indicated the AMR are intended to be applied when VCC > VCC,on. When VCC < VCC,on the minimum between the indicated value and VCC + 0.3 V has to be considered.
4.2 Thermal data Table 4. Thermal data Symbol Parameter Value Unit
RthJA Thermal resistance junction to ambient 120 °C/W TJ Junction temperature operating range -40 to 125 °C Tstg Storage temperature range -55 to 150 °C 8/33 DS12748 Rev 1 Document Outline Table 1. Device summary 1 Block diagram Figure 1. Block diagram 2 Typical application - HPF flyback Figure 2. Primary side regulated (PSR) application Figure 3. Secondary side regulated (SSR) application 3 Pin settings Figure 4. Pin connection Table 2. Pin description (continued) 4 Electrical data 4.1 Absolute maximum ratings Table 3. Absolute maximum ratings 4.2 Thermal data Table 4. Thermal data 4.3 Recommended operating conditions Table 5. Recommended operating conditions 5 Electrical characteristics Table 6. Electrical characteristics (continued) 6 Typical electrical characteristic 6.1 Parameter graphs Figure 5. ICC vs. Fsw @ VCC = 15V Figure 6. VCC,on and VCC,su vs. Tj Figure 7. Icharge and Icharge,su vs. Tj Figure 8. IFB,src and IFB,snk vs. Tj Figure 9. Vbm, Vbm2 and VOPTO,dis vs. Tj Figure 10. Tbm and Tbm2 vs. Tj Figure 11. VZCD,arm and VZCD,trig vs. Tj Figure 12. VCS,lim vs. Tj Figure 13. VREF,PSR vs. Tj Figure 14. IFB vs. VZCD sample Figure 15. TBLANK,min vs. Tj Figure 16. TBLANK,var vs. Tj 7 Application information 7.1 Operating modes Figure 17. High power factor flyback - Primary side regulated constant output voltage Figure 18. High power factor flyback – Secondary side regulated application 7.1.1 Start-up mode Figure 19. Initial start-up phase 7.1.2 Ramp-up mode 7.1.3 Active mode 7.1.4 Low consumption mode 7.1.5 Stop mode 7.2 Control loop Figure 20. Control loop blocks 7.2.1 Current sense input 7.2.2 Feedback input 7.2.3 Zero current detection Figure 21. TBLANK,var time vs. TOFF voltage Figure 22. TBLANK,var time vs. TOFF voltage 7.2.4 Primary side regulation feature Figure 23. PSR E/A small signal model 7.2.5 Burst mode operation 7.3 Gate driver 7.4 IC supply management 7.4.1 VCC supply management 7.4.2 High voltage startup Table 7. HVSU operating modes 7.5 Auto restart timer (ART) 7.6 Protections 7.6.1 Over current protection (OCP) 7.6.2 Input over voltage protection (I-OVP) 7.6.3 Brownout protection (BO) 7.6.4 Over power protection (OPP) 7.6.5 Output over voltage protection (oOVP) 7.7 Disable and monitor feature 8 Package information 8.1 SSOP10 package outline Figure 24. SSOP10 package mechanical data Table 8. SSOP10 package mechanical data 9 Revision history Table 9. Document history
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