| Rudell et al., “Hiughly Integrated Transceiver Architectures for Adaptive RF Communications,” University of California, Berkley, date unknown. |
| Behbahani et al., “An All CMOS, 2.4 GHz, Full Adaptive, Scalable, Frequency Hopped Transceiver” University of California, Los Angelese, Integrated Circuit & Systems Laboratory, date unknown. |
| Ellingson et al., “An 8-Element Dual-Frequency Array Receiver for Propagation Measurements near 2.4 GHz,” The Ohio State University ElectroScience Laboratory, Jul., 2001. |
| Gozali et al., Virginia Tech Space-Time Advanced Radio (VT-STAR), Proceedings, Radio and Wireless Conference (RAWCON) 2001. |
| “Parkervision Announces Successful Development of Most Integrated High Performace Wireless LAN Transceiver Chips Current Available,” Jul. 30, 2002. |
| PV-1000Hb 802.11b RF Transceiver Product Specification, 2002, pp. 1-11. |
| Madihian, et al., “A 5 GHz-Band Multifunctional BiCMOS Transceiver Chip for GMSK Modulation Wireless Systems,” IEEE Journal of Solid-State Circuits, vol. 34, No. 1, Jan., 1999. |
| Rudell et al., “Recent Developments in High Integration Multi-Standard CMOS Transceiver for Personal Communication Systems,” 1998 International Symposium on Lower Power Electronics, Monterey, California. |
| Cho et al., “Multi-Standard Monolithic CMOS RF Transceiver,” University of California, Berkeley, Jan. 8, 1996, (pp. 1-26). |
| Cho et al., “Multi-Standard Monolithic CMOS RF Transceiver,” University of California, Berkley, Jun. 16, 1996. |
| Rudell et al., “Second Generation Multi-Standard Monolithic CMOS RF Transceiver,” University of California, Berkeley, Jun. 16, 1996. |
| Lantz, “A 5GHz, SiGe, Monolithic WLAN Transceiver”, PCC Workshop, 1999. |
| Copeland et al., “5GHz SiGe HBT Monolithic Radio Transceiver with tunable filtering”, IEEE Trans on Microwave Theory and Techniques, Feb. 2000, vol. 48, No. 2. |
| Single Chip Bluetooth Radio Transceiver, STMicroelectronics, 2001, (2 pages). |
| International Search Report in International Application No. PCT/US03/12183. |