Patent classifications
H03B2200/0076
OSCILLATOR CIRCUIT, CORRESPONDING APPARATUS AND METHOD
An oscillator has an oscillator output emitting an oscillating signal. The oscillator includes oscillator cores which each have a same circuit topology. A set of configuration switches couple a selected number of oscillator cores in parallel to generate the oscillating signal. The oscillator cores are arranged with a symmetry around a central axis. The planar inductors of the oscillator cores are arranged in a petal-like pattern with the planar inductors forming the petals of the petal-like pattern. The selected coupling of the oscillator cores in made in response to a selected phase noise threshold of a modulation device which receives the oscillating signal.
A METHOD OF TRANSMITTING POWER AND DATA ACROSS A GALVANIC ISOLATION BARRIER, CORRESPONDING SYSTEM AND APPARATUS
Power and data are transmitted via a transformer including primary side and secondary side. A primary side signal is generated by coupling a first oscillator signal modulated with a data signal with a second oscillator signal that is selectively switched on and off. At the secondary side a secondary signal is generated. A demodulator demodulates the secondary signal to recover the data signal. A rectifier processes the secondary signal to recover a power supply signal controlled by switching on and off the second oscillator.
REDUNDANT OSCILLATOR WITH SYNCHRONOUS START-UP
A circuits for synchronizing oscillators without settling time include a power supply voltage source (VDD), at least three coupled oscillators having respective inputs connected to a first single node, at least three inverting buffers, each inverting buffer having a respective input connected to an output of a corresponding oscillator of the at least three oscillators, at least three summing resistors, an input side of which is connected to an output side of one and only one of the at least three inverting buffers each summing resistor having a first end connected to an output of a corresponding inverting buffer of the at least three inverting buffers, and a combined output created by connecting second ends of the at least three summing resistors to a single second node.
MULTICORE ROTARY TRAVELING WAVE OSCILLATOR
Techniques, circuits, and systems related to a multicore rotary traveling wave oscillator (RTWO) are provided. The multicore RTWO includes at least two metal layers and multiple RTWO cores, such that each core comprises a set of differential signal conductors that are interleaved across the metal layers to optimize space and reduce parasitic effects. The relative positional configuration of these differential signal conductors varies across a range of directionalities and/or orientations. In embodiments, an oscillator output signal is generated by the multicore RTWO; the frequency of this oscillator output signal is adjusted based on a comparison of its phase with that of a reference signal, such as within a phase locked loop circuit.