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This work presents research results on designing the drive and readout circuits for a newly-developed optical vibrations sensor. Tes sensor consists of organic light-emitting diodes (OLEDs) and photodetectors (OPDs) and micro-structure to realize the function of vibration sensing. Proper operations of OLEDs and OPDS needs a driver and a readout circuit, respectively. A driver circuit is designed for...
A novel design method of a printed leaky wave antenna for gain enhancement is presented in this work. By adding lumped elements on the edges of a thin PCB PRS antenna, the broadside gain can be improved by nearly 1.5dB. This work covers the design concept, the full-wave simulation, and the measurement on the developed prototypes. The measurement results show a good agreement to the simulated results.
A CMOS D-band 135–150 GHz transmitter is presented with integrated digital control and on-chip antenna. The proposed transmitter employs an IF feed-forward compensation scheme which improves the soft gain compression of the power amplifier by 5.1dB to provide an overall more linear AM-AM profile allowing reduced power back-off for modulation schemes with a high peak-to-average ratio. The proposed...
A fully differential 60 GHz three-stage transformer-coupled amplifier is designed and implemented in 65 nm digital CMOS process. On-chip transformers which offer DC biasing for individual stages, extra stabilization mechanisms, and simultaneous input/inter-stage/output matching networks are used to facilitate a compact circuit design. With a cascoded circuit configuration, the amplifier is tested...
In conclusion, a novel planar PCB multiband antenna with parasitic element is proposed in this paper. Using only two simple radiating elements, the antenna operates with three separate resonant modes, covering six popular communication bands. The antenna area only occupies a small physical space (18 times 37 times 0.6 mm3). This simple planar PCB structure makes the antenna fabrication very cost effective...
A low power inductorless wideband variable gain control amplifier (VGA) for baseband receivers has been designed in a standard digital 90 nm CMOS technology. The VGA was implemented using four-stage modified Cherry-Hooper amplifier with a dual feedback DC-offset canceling network, which simultaneously corrects DC offsets and extends bandwidth without a peaking inductor resulting in saving the chip...
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