Avoiding oscillation in self-synchronous bi-directional communication system
View Patent ↗In a bi-directional, self-synchronous bus for communication between semiconductor devices, a logic delay is provided as a flag to a state machine control for indicating that the bus is making a transition from a low to a high state. The logic delay causes the bus to adaptively idle until the bus settles, making it amenable for a wide variety of bus sizes and topologies. In this way, oscillation of the bus is avoided without slowing the speed of the state machine clock.
1. At least one program storage device readable by a machine, tangibly embodying at least one program of instructions executable by the machine to perform a method for controlling communication between devices coupled via a bi-directional bus, the method comprising:
providing control logic for determining a state of communication between the devices;
providing a logic delay for adaptively idling the bus during a logic level transition between states of communication between the two devices, such that a logic level transition is not communicated until the logic level transition is complete;
controlling a state of a first signal at an input/output pin of a first device of the two devices; and
controlling a state of a second signal at an input/output pin of a second device of the two devices.
2. The at least one program storage device of claim 1 wherein the logic delay provides a wait state until the logic delay transitions from a low logic level to a high logic level.
3. The at least one program storage device of claim 1 wherein the logic delay comprises a predetermined time greater than a predetermined rise time of the bus.
4. At least one program storage device readable by a machine, tangibly embodying at least one program of instructions executable by the machine to perform a method for controlling communication between devices coupled via a bi-directional bus, the method comprising:
providing control logic for determining a state of communication between the devices;
providing a logic delay for adaptively idling the bus during a logic level transition between states of communication between the two devices, such that a logic level transition is not communicated until the logic level transition is complete;
controlling a state of a first signal at an input/output pin of a first device of the two devices;
controlling a state of a second signal at an input/output pin of a second device of the two devices;
providing a current first state and a current second state;
providing a first input encoder logic for receiving the current first state, the current second state, the first signal and the second signal, and generating therefrom a next first state; and
providing a second input encoder logic for receiving the current first state, the current second state, the first signal and the second signal, and generating therefrom a next second state.
5. The at least one program storage device of claim 4 wherein the logic delay provides a wait state until the logic delay transitions from a low logic level to a high logic level.
6. The at least one program storage device of claim 4 wherein the logic delay comprises a predetermined time greater than a predetermined rise time of the bus.