Valve unit for a system for producing a medical preparation
A valve unit for a system for producing a medical preparation for parenteral nutrition is described. The valve unit includes a housing having a duct extending along a longitudinal access of housing, upper inlets and lower inlets, and an outlet in fluid communication with each of the inlets via the duct. The valve unit includes valves that alternately connect a respective upper inlet of the upper inlets and a respective lower inlet of the lower inlets to the duct. Each of the valves have a first passage that fluidly connects the respective upper inlet and the duct, and a second passage that fluidly connects the respective lower inlet and the duct.
1 . A valve unit for a system for producing a medical preparation for parenteral nutrition, the valve unit comprising:
a housing defining:
a duct extending along a longitudinal access of housing;
inlets; and
an outlet configured to be in fluid communication with each of the inlets via the duct, the inlets comprising upper inlets and lower inlets; and
valves within the housing, each of the valves being configured to alternately connect a respective upper inlet of the upper inlets and a respective lower inlet of the lower inlets to the duct, each of the valves defining:
a first passage configured to fluidly connect the respective upper inlet and the duct; and
a second passage configured to fluidly connect the respective lower inlet and the duct, wherein:
the first passage and the second passage each intersect a central axis of the valve,
the first passage slopes downwardly from the respective upper inlet to the duct when the first passage fluidly connects the respective upper inlet and the duct,
the second passage slopes upwardly from the respective lower inlet to the duct when the second passage fluidly connects the respective lower inlet and the duct, and
each valve is rotatable within the housing between a closed position, a first opened position, and a second opened position.
2 . The valve unit of claim 1 , wherein, from the closed position, each valve is configured to rotate one of clockwise or counterclockwise in an amount between 45° and 70° to the first opened position.
3 . The valve unit of claim 2 , wherein the amount to rotate each valve from the closed position to the first opened position is 60°.
4 . The valve unit of claim 2 , wherein, from the closed position, each valve is configured to rotate the other of clockwise or counterclockwise between 45° and 70° to the second opened position.
5 . The valve unit of claim 4 , wherein the amount to rotate each valve from the closed position to the second opened position is 60°.
6 . The valve unit of claim 1 , wherein:
neither the first passage nor the second passage are fluidly connected to the duct when the valves are in the closed position,
the first passage fluidly connects the respective upper inlet to the duct when the valves are in the first opened position, and
the second passage fluidly connects the respective lower inlet to the duct when the valves are in the second opened position.
7 . The valve unit of claim 1 , wherein a magnitude of the slope of the first passage is the same as a magnitude of the slope of the second passage.
8 . The valve unit of claim 1 , wherein a slope of the first passage is constant from an inlet of the first passage to an outlet of the first passage.
9 . The valve unit of claim 1 , wherein a slope of the second passage is constant from an inlet of the second passage to an outlet of the second passage.
10 . The valve unit of claim 1 , wherein a central axis of the duct is between central axes of upper inlets and central axes of the lower inlets.
11 . The valve unit of claim 2 , wherein:
a central axis of each of the upper inlets and of each of the lower inlets extend through a first plane that is coplanar with a lateral wall of the housing,
the central axes of each of the upper inlets extend along a second plane that is offset vertically above a bottom of the housing by a first amount,
the central axes of each of the lower inlets extend along a third plane that is offset vertically above the bottom of the housing by a second amount that is less than the first amount,
the central axes of each of the upper inlets are vertically aligned with the central axes of a respective one of the central axes of the lower inlets, and
the bottom of the housing is configured to connect to a receptacle of the system.
12 . The valve unit of claim 11 , wherein a central axis of the outlet is between the first plane and the second plane.
13 . The valve unit of claim 1 , wherein the valve unit is integral.
14 . The valve unit of claim 1 , wherein the upper inlets comprise at least three upper inlets and the lower inlets comprise at least three lower inlets.
15 . The valve unit of claim 11 , wherein the second plane is offset vertically above a top of the housing.
16 . The valve unit of claim 13 , wherein:
the upper inlets are first upper inlets, the lower inlets are first lower inlets, the valves are first valves, and the lateral wall is a first lateral wall,
the inlets comprising second upper inlets and second lower inlets,
the valve unit comprising second valves, each second valve being configured to alternately connect a respective second upper inlet of the second upper inlets and a respective second lower inlet of the second lower inlets to the outlet,
a central axis of each of the second upper inlets and of each of the second lower inlets extend through a fourth plane that is coplanar with a second lateral wall of the housing,
the central axes of each of the second upper inlets extend along the second plane,
the central axes of each of the second lower inlets extend along the third plane, and
the central axes of each of the second upper inlets are vertically aligned with the central axes of a respective one of the central axes of the second lower inlets.
17 . The valve unit of claim 16 , wherein the second lateral wall opposes the first lateral wall.
18 . The valve unit of claim 16 , wherein a central axis of the outlet extends perpendicular to the central axes of each of the first upper inlets, the second upper inlets, the first lower inlets, and the second lower inlets.
19 . The valve unit of claim 1 , wherein:
the first passage comprises a first outlet that is configured to fluidly connect to the duct and the second passage comprises a second outlet that is configured to fluidly connect to the duct, and
the first outlet and the second outlet are the same size.
20 . The valve unit of claim 19 , wherein the first outlet and the second outlet are configured to be at a same height when fluidly connected to the duct.