Abstract:
Ejection device (150) for fluid (6), comprising a solid body including: first semiconductor body (80, 100) including a chamber (130) for containing the fluid (6), an ejection nozzle (121) in fluid connection with the chamber (130), and an actuator (91) operatively connected to the chamber (130) to generate, in use, one or more pressure waves in the fluid (6) such as to cause ejection of the fluid (6) from the ejection nozzle (121); and a second semiconductor body (30) including a channel (123, 41, 48a) for feeding the fluid (6) to the chamber (130), coupled to the first semiconductor body (80, 100), in such a way that the channel (123, 41, 48a) is in fluid connection with the chamber (130). The second semiconductor body (30) integrates a damping cavity (40) over which extends a damping membrane (35), the damping cavity and the damping membrane extending laterally to the channel (48a) for feeding the fluid.
Abstract:
The present disclosure is directed to a greenhouse or single container for plant growth coupled to the Internet of Things and including a microfluidic die for water or nutrient distribution. The microfluidic die is controllable automatically or with instructions from a remote user, based on sensors included within a growth environment.
Abstract:
The present disclosure is directed to a greenhouse or single container for plant growth coupled to the Internet of Things and including a microfluidic die for water or nutrient distribution. The microfluidic die is controllable automatically or with instructions from a remote user, based on sensors included within a growth environment.