ZHCSI59I July 2009 – May 2018 TPS65070 , TPS65072 , TPS65073 , TPS650731 , TPS650732
UNLESS OTHERWISE NOTED, this document contains PRODUCTION DATA.
| FIGURE | |||
|---|---|---|---|
| Efficiency DCDC1 vs Load current / PWM mode | VO = 3.3 V; VI = 3 V, 3.6 V, 4.2 V, 5 V | Figure 2 | |
| Efficiency DCDC1 vs Load current / PFM mode | VO = 3.3 V; VI = 3 V, 3.6 V, 4.2 V, 5 V | Figure 3 | |
| Efficiency DCDC2 vs Load current / PWM mode up to 1.5A | VO = 2.5 V; VI = 3 V, 3.6 V, 4.2 V, 5 V | Figure 4 | |
| Efficiency DCDC2 vs Load current / PFM mode up to 1.5A | VO = 2.5 V; VI = 3 V, 3.6 V, 4.2 V, 5 V | Figure 5 | |
| Efficiency DCDC2 vs Load current / PWM mode up to 1.5A | VO = 1.8 V; VI = 3 V, 3.6 V, 4.2 V, 5 V | Figure 6 | |
| Efficiency DCDC2 vs Load current / PFM mode up to 1.5A | VO = 1.8 V; VI = 3 V, 3.6 V, 4.2 V, 5 V | Figure 7 | |
| Efficiency DCDC3 vs Load current / PWM mode up to 1.5A | VO = 1.2 V; VI = 3 V, 3.6 V, 4.2 V, 5 V | Figure 8 | |
| Efficiency DCDC3 vs Load current / PFM mode up to 1.5A | VO = 1.2 V; VI = 3 V, 3.6 V, 4.2 V, 5 V | Figure 9 | |
| Efficiency DCDC3 vs Load current / PWM mode up to 1.5A | VO = 1 V; VI = 3 V, 3.6 V, 4.2 V, 5 V | Figure 10 | |
| Efficiency DCDC3 vs Load current / PFM mode up to 1.5A | VO = 1 V; VI = 3 V, 3.6 V, 4.2 V, 5 V | Figure 11 | |
| Load transient response converter 1 | Scope plot; IO= 60 mA to 540 mA; VO = 3.3 V; VI = 3.6 V | Figure 12 | |
| Load transient response converter 2 | Scope plot; IO= 150 mA to 1350 mA; VO = 1.8 V; VI = 3.6 V | Figure 13 | |
| Load transient response converter 3 | Scope plot; IO= 150 mA to 1350 mA; VO = 1.2 V; VI = 3.6 V | Figure 14 | |
| Line transient response converter 1 | Scope plot; VO= 3.3; VI = 3.6 V to 5 V to 3.6 V; IO= 600 mA | Figure 15 | |
| Line transient response converter 2 | Scope plot; VO= 1.8; VI = 3.6 V to 5 V to 3.6 V; IO = 600 mA | Figure 16 | |
| Line transient response converter 3 | Scope plot; VO = 1.2 V; VI=3.6 V to 5 V to 3.6 V; IO = 600 mA | Figure 17 | |
| Output voltage ripple and inductor current converter 2;
PWM Mode |
Scope plot; VI = 3.6 V; VO=1.8 V; IO = 10 mA | Figure 18 | |
| Output voltage ripple and inductor current converter 2;
PFM Mode |
Scope plot; VI = 3.6 V; VO=1.8 V; IO = 10 mA | Figure 19 | |
| Startup DCDC1, DCDC2 and DCDC3, LDO1, LDO2 | Scope plot | Figure 20 | |
| Load transient response LDO1 | Scope plot; VO= 1.2 V; VI=3.6 V | Figure 21 | |
| Line transient response LDO1 | Scope plot | Figure 22 | |
| KSET vs RISET | Figure 23 | ||
| wLED efficiency vs duty cycle | 2 x 6LEDs (VLED=19.2 V); IO= 2x20 mA | Figure 24 | |
| wLED efficiency vs input voltage | 2 x 6LEDs (VLED=19.2V); IO= 2x20 mA | Figure 25 | |
Figure 2. Efficiency DCDC1 vs Load Current/PWM Mode
Figure 4. Efficiency DCDC2 vs Load Current/PWM Mode
Figure 6. Efficiency DCDC2 vs Load Current/PWM Mode
Figure 8. Efficiency DCDC3 vs Load Current/PWM Mode
Figure 10. Efficiency DCDC3 vs Load Current/PWM Mode
Figure 12. Load Transient Response Converter 1
Figure 14. Load Transient Response Converter 3
Figure 16. Line Transient Response Converter 2
Figure 18. Output Voltage Ripple and Inductor Current Converter 2 – PWM Mode
Figure 20. Startup DCDC1, DCDC2, AND DCDC3, LDO1, LDO2
Figure 24. wLED Efficiency vs Duty Cycle
Figure 3. Efficiency DCDC1 vs Load Current/PFM Mode
Figure 5. Efficiency DCDC2 vs Load Current/PFM Mode
Figure 7. Efficiency DCDC2 vs Load Current/PFM Mode
Figure 9. Efficiency DCDC3 vs Load Current/PFM Mode
Figure 11. Efficiency DCDC3 vs Load Current/PFM Mode
Figure 13. Load Transient Response Converter 2
Figure 15. Line Transient Response Converter 1
Figure 17. Line Transient Response Converter 3
Figure 19. Output Voltage Ripple and Inductor Current Converter 2 – PFM Mode
Figure 21. Load Transient Response LDO1
Figure 23. KSET vs RISET
Figure 25. wLED Efficiency vs Vin