Switch body connections to achieve soft breakdown
Devices and methods for switch body connections to achieve soft breakdown. In some embodiments, a field-effect transistor (FET) can include an assembly of source, gate, and drain implemented on an active region, a first body contact implemented at a first end of the assembly, and a second body contact implemented at a second end of the assembly. The second end can be distal from the first end along a width of the field-effect transistor.
1. A radio-frequency switching device comprising:
an assembly of source, gate, and drain implemented on an active region;
a first body contact implemented at a first end of the assembly; and
a second body contact implemented at a second end of the assembly, the second end distal from the first end along a width of the radio-frequency switching device, the first body contact and the second body contact coupled to a diode, the first body contact coupled to a first end of the diode and the second body contact coupled to a second end of the diode, the first body contact and the second body contact being physically separate body contacts at the first end and the second end of the assembly.
2. The radio-frequency switching device of claim wherein the diode is a P-N junction diode.
3. The radio-frequency switching device of claim wherein the diode is a PMOS field-effect transistor.
4. A radio-frequency module comprising:
a packaging substrate configured to receive a plurality of devices; and
a die mounted on the packaging substrate, the die including a radio-frequency switching device having an assembly of source, gate, and drain implemented on an active region, the radio-frequency switching device further including a first body contact implemented at a first end of the assembly and a second body contact implemented at a second end of the assembly, the second end distal from the first end along a width of the radio-frequency switching device, the first body contact and the second body contact coupled to a diode, the first body contact coupled to a first end of the diode and the second body contact coupled to a second end of the diode, the first body contact and the second body contact being physically separate body contacts at the first end and the second end of the assembly.
5. The radio-frequency module of claim 4 wherein the radio-frequency module is a switch module.
6. The radio-frequency module of claim 4 wherein the die is a silicon-on-insulator (SOI) die.
7. The radio-frequency module of claim 4 wherein the diode is a P-N junction diode.
8. The radio-frequency module of claim 4 wherein the diode is a PMOS field-effect transistor.
9. A wireless device comprising:
a transceiver configured to process radio-frequency signals;
a radio-frequency module in communication with the transceiver, the radio-frequency module including a radio-frequency switching device including an assembly of source, gate, and drain implemented on an active region, the radio-frequency switching device further including a first body contact implemented at a first end of the assembly and a second body contact implemented at a second end of the assembly, the second end distal from the first end along a width of the radio-frequency switching device, the first body contact and the second body contact coupled to a diode, the first body contact coupled to a first end of the diode and the second body contact coupled to a second end of the diode, the first body contact and the second body contact being physically separate body contacts at the first end and the second end of the assembly; and
an antenna in communication with the radio-frequency module, the antenna configured to facilitate transmitting and/or receiving of the radio-frequency signals.
10. The wireless device of claim 9 wherein the radio-frequency module is a switch module.
11. The wireless device of claim 9 wherein the diode is a P-N junction diode.
12. The wireless device of claim 9 wherein the diode is a PMOS field-effect transistor.