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A fully-integrated low power PAM/PPM multi-channel UWB transmitter
Conference proceeding

A fully-integrated low power PAM/PPM multi-channel UWB transmitter

Caixia Chen, Manh Anh Do, Kiat Seng Yeo and Chirn Chye Boon
Proceedings of the 2009 12th International Symposium on Integrated Circuits, pp.93-96
12/2009

Abstract

CMOS process Energy consumption FCC Gaussian pulse modulator Power generation Pulse generation Pulse modulation Radio transmitters Signal generators switches Transmitter Ultra wideband technology UWB Voltage
A new transmitter for ultra-wideband (UWB) impulse radio is described in this paper. The proposed architecture features the simple design, low-power operation, and enables the pulse-shape generation for 2 modulation schemes for a multi-channel UWB. The average power calculation is presented for pulse trains using Pulse-Amplitude Modulation (PAM) and Pulse-Position Modulation (PPM). The design is based on a 0.18-¿m CMOS process. The core layout size is only 0.35 mm 2 . The simulation results show that the generated signals satisfy the FCC spectrum mask, and the average power consumption is less than 1.7 mW for these two types of signaling at a 1.8 V supply voltage. Pulses are transmitted at a PRF (Pulse Repetition Frequency) of 52 MHz in 520 MHz bandwidth channels equally spaced within the 3.1-10.6 GHz ultra-wideband band.

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