Flow rate measuring mechanism, mass flow controller, and pressure sensor
The present invention is a flow rate measuring mechanism provided with: a body unit that has an internal flow path through which a target fluid to be measured is configured to flow; and a pressure sensor that is attached to the body unit and senses a pressure of the internal flow path, and configured to calculate a flow rate of the fluid on the basis of the fluid pressure sensed by the pressure sensor, wherein the body unit has a length direction and a surface parallel to the length direction, which is set as a component attachment surface, and to the component attachment surface, the pressure sensor is attached such that a pressure sensitive surface thereof is substantially vertical to the component attachment surface and substantially parallel to the length direction, and thereby, without causing a reduction in pressure measurement sensitivity, makes a width direction size dramatically smaller than before.
1. A flow rate measuring mechanism comprising:
a body unit that has an internal flow path through which a target fluid to be measured is configured to flow;
a fluid resistance member is separating the internal flow path and has a resistance flow path that communicatively connects an upstream side internal flow path upstream of the resistance member and a downstream side flow path downstream of the resistance member; and
a pressure sensor that is attached to the body unit and senses a pressure of at least one of the upstream side internal flow path and the downstream side internal flow path, the flow rate measuring mechanism being configured to calculate a flow rate of the fluid on a basis of the fluid pressure sensed by the pressure sensor, wherein:
the body unit has a length direction and a surface parallel to the length direction, the surface being set as a component attachment surface, and to the component attachment surface, the pressure sensor is attached such that a pressure sensitive surface thereof is substantially vertical to the component attachment surface and substantially parallel to the length direction,
a length direction size of the pressure sensitive surface is larger than a width size of the body unit at a largest width portion of the body unit, the width size being a size in a direction orthogonal to the length direction of the body unit, and
an outer dimensional thickness size from one outermost surface to another opposite outermost surface of the pressure sensor in a direction parallel to a width direction of the body unit is set to be smaller than or the same as the width size of the body unit.
2. A mass flow controller comprising:
the flow rate measuring mechanism according to claim 1 ;
a flow rate control valve that is attached to the body unit; and
a control circuit that controls the flow rate control valve so as to make a measured flow rate by the flow rate measuring mechanism equal to a predetermined target flow rate.
3. The flow rate measuring mechanism of claim 1 , wherein the pressure sensor is configured to not protrude from the body unit in the width direction in an attached state.
4. The flow rate measuring mechanism of claim 1 , wherein the body unit has two other side flat surfaces parallel to the length direction, the two other side flat surfaces configured to not attach with any components.
5. A flow rate measuring mechanism comprising:
a body unit that has an internal flow path through which a target fluid to be measured is configured to flow;
a fluid resistance member is separating the internal flow path and has a resistance flow path that communicatively connects an upstream side internal flow path upstream of the resistance member and a downstream side flow path downstream of the resistance member; and
a pressure sensor that is attached to the body unit and senses a pressure of at least one of the upstream side internal flow path and the downstream side internal flow path, the flow rate measuring mechanism being configured to calculate a flow rate of the fluid on a basis of the fluid pressure sensed by the pressure sensor, wherein:
the body unit has a length direction and a surface parallel to the length direction, the surface being set as a component attachment surface; and to the component attachment surface, the pressure sensor is attached such that a pressure sensitive surface thereof is substantially vertical to the component attachment surface and substantially parallel to the length direction,
a length direction size of the pressure sensitive surface is larger than a width size of the widest portion of a part of the body unit that the pressure sensor is attached to, the width size being a size in a direction orthogonal to the length direction of the body unit, and
an outer dimensional thickness size from one outermost surface to another opposite outermost surface of the pressure sensor in a direction parallel to a width direction of the body unit is set to be smaller than or the same as the width size of the body unit.