VIN = 3.6V, VOUT = 5V,
Normal Mode, TJ = 25°C, unless otherwise noted
VIN = 0.7V, 1.8V, 2.7V, 3.6V, 4.3V,
5.0V; VOUT = 5.0V |
Figure 6-1 5.0V
VOUT Efficiency with Different Inputs Under Normal Mode
VIN = 0.7V, 1.9V, 3.0V ; VOUT
= 3.3V |
Figure 6-3 3.3V
VOUT Efficiency with Different Inputs Under Normal Mode
VIN = 3.0V, 3.6V, 4.3V; VOUT
= 5.0V |
Figure 6-5 5.0V
VOUT Efficiency with Different Inputs Under Fast Mode
VIN = 0.7V, 3.6V 4.3V; VOUT =
5V, TJ = –40°C to +85 °C, No
switching |
Figure 6-7 Quiescent Current into VIN vs Temperature
VIN = 1.5V; VOUT = 1.8V ,
3.3V , 5V, TJ = –40°C to +85 °C, No
switching |
Figure 6-9 Quiescent Current into VOUT vs Temperature
VIN = 0.7V, 3.6V 4.3V; VOUT =
0V, TJ = –40°C to +85 °C |
Figure 6-11 TPS61299 Shutdown Current vs Temperature
VIN = 0.7V, 1.8V, 2.7V, 3.6V, 4.3V,
5.0V; VOUT = 5.0V |
Figure 6-2 5.0V
VOUT Load Regulation with Different Inputs Under Normal Mode
VIN = 0.7V, 1.9V, 3.0V ; VOUT
= 3.3V |
Figure 6-4 3.3V
VOUT Load Regulation Under Normal Mode
VIN = 3.0V, 3.6V, 4.3V; VOUT
= 5.0V |
Figure 6-6 5.0V
VOUT Load Regulation with Different InputsUnder Fast Mode
VIN =2.6V, 3.8V, 4.3V; VOUT =
5.0V |
Figure 6-8 5.0V
VOUT Frequency Vs output current under Normal Mode
VIN =0.9V, 3.8V, 4.3V; VOUT =
5.0VTJ = 25°C |
Figure 6-10 TPS61299A High side Rdson
VS Vin