A 28 nm CMOS Dual-Band Concurrent WLAN and Narrow Band Transmitter With On-Chip Feedforward TX-to-TX Interference Cancellation Path for Low Antenna-to-Antenna Isolation in IoT Devices
Author:
Affiliation:
1. NXP Semiconductors, San Jose, CA, USA
2. NXP Semiconductors, Pune, Maharashtra, India
Funder
Internal NXP Semiconductors Research and Product Development
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Link
http://xplorestaging.ieee.org/ielx7/4/10507893/10412084.pdf?arnumber=10412084
Reference26 articles.
1. Low-Noise Active Cancellation of Transmitter Leakage and Transmitter Noise in Broadband Wireless Receivers for FDD/Co-Existence
2. Wideband Dual-Injection Path Self-Interference Cancellation Architecture for Full-Duplex Transceivers
3. In-Band Full-Duplex Technology: Techniques and Systems Survey
4. A Full-Duplex Receiver With True-Time-Delay Cancelers Based on Switched-Capacitor-Networks Operating Beyond the Delay–Bandwidth Limit
5. A 0.5-4GHz Full-Duplex Receiver with Multi-Domain Self-Interference Cancellation Using Capacitor Stacking Based Second-Order Delay Cells in RF Canceller
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