Dual-stage fluidics system uses peristaltic pumps to dampen pulsations and stabilize flow for precise medical instrumentation.
A pressurized tree injection apparatus delivers treatment solutions directly into vascular tissue via a dedicated feeder tube.
Segmenting the handle allows the movable portion to switch modes and adjust flow, resolving sealing versus accessibility trade-offs.
A fluid delivery apparatus combines a pneumatically driven diaphragm pump with a positive displacement pump for precise flow control.
A bypass valve recirculates fluid from the pump outlet to the inlet, maintaining minimum pressure flows for cooling while supporting high turn-down ratios.
Impulse generation detaches gas bubbles from chamber walls, allowing accumulated gas to escape through the pressure valve without fluid loss.
A torque control system adjusts piston stroke length to manage variable displacement pump output.
Automated pressure monitoring calculates cavitation ratios to adjust pump speed, preventing mechanical damage during continuous operation.
A control unit calculates compensation flow rates to counteract thermal contraction in plunger pumps.
Segmenting fixed and variable displacement pumps reduces bypass flow waste, improving thrust-specific fuel consumption across flight phases.