Boost converter having a buck supply voltage input
According to some implementations, a voltage supply system includes a boost converter including a bypass core. The voltage supply system also includes a buck converter configured to receive an input voltage and generate a buck voltage. The voltage supply system further includes a routing circuit configured to provide the buck voltage as an input to the boost converter.
1. A voltage supply system comprising:
a boost converter including a bypass core, the bypass core configured to provide a buck voltage as a first output of the boost converter;
a buck converter configured to receive an input voltage and generate a buck voltage; and
a routing circuit configured to provide the buck voltage as an input to the boost converter.
2. The voltage supply system of claim 1 wherein the input voltage is a battery voltage Vbatt.
3. The voltage supply system of claim 2 wherein the boost converter voltage converter is configured to receive the battery voltage Vbatt and generate a boosted voltage.
4. The voltage supply system of claim 3 wherein the boosted voltage is configured as a supply voltage for one or more high-voltage (HV) power amplifiers (PAs).
5. The voltage supply system of claim 4 wherein the bypass core is configured to provide the battery voltage Vbatt as a second output of the boost converter.
6. The voltage supply system of claim 1 further comprising a controller configured to facilitate operation of the boost converter.
7. The voltage supply system of claim 6 wherein the boost converter includes first and second switches configured to allow switched mode operations.
8. The voltage supply system of claim 7 wherein the routing circuit includes a routing switch between a first output node and a second output node, the routing switch configured to be controlled by the controller.
9. A radio-frequency (RF) module comprising:
a packaging substrate configured to receive a plurality of components; and
a power amplification system implemented on the packaging substrate, the power amplification system including a voltage supply system, the voltage supply system including a boost converter having a bypass core, the bypass core configured to provide a buck voltage as a first output of the boost converter, the voltage system further including a buck converter configured to receive an input voltage and generate a buck voltage, the voltage system further including a routing circuit configured to provide the buck voltage as an input to the boost converter.
10. The RF module of claim 9 wherein the RF module is a front-end module (FEM).
11. The RF module of claim 9 wherein the input voltage is a battery voltage Vbatt.
12. The RF module of claim 11 wherein the boost converter voltage converter is configured to receive the battery voltage Vbatt and generate a boosted voltage.
13. The RF module of claim 12 wherein the boosted voltage is configured as a supply voltage for one or more high-voltage (HV) power amplifiers (PAs).
14. The RF module of claim 13 wherein the bypass core is configured to provide the battery voltage Vbatt as a second output of the boost converter.
15. The RF module of claim 9 further comprising a controller configured to facilitate operation of the boost converter.
16. The RF module of claim 15 wherein the boost converter includes first and second switches configured to allow switched mode operations.
17. The RF module of claim 16 wherein the routing circuit includes a routing switch between a first output node and a second output node, the routing switch configured to be controlled by the controller.
18. A method for operating a voltage supply system, the method comprising:
generating a buck voltage from an input voltage;
providing the buck voltage as an input to a boost converter; and
routing the buck voltage through the boost converter to yield an output voltage, the routing including bypassing a boost functionality of the boost converter such that the output voltage is substantially equal to the buck voltage.