Device for measuring the pressure and temperature of fluids
10921198 ยท 2021-02-16
Assignee
Inventors
- Sergio DIEZ GARCIA (Villatuerta, ES)
- Ignacio Ardaiz Usoz (Villatuerta, ES)
- Lesmes NICOLAS HARO (Villatuerta, ES)
Cpc classification
G01L19/147
PHYSICS
G01K2205/00
PHYSICS
G01L19/0092
PHYSICS
G01L1/14
PHYSICS
G01L1/20
PHYSICS
G01K13/02
PHYSICS
International classification
G01L1/14
PHYSICS
Abstract
A device for measuring the pressure and temperature of fluids is provided, which has a temperature-sensitive element and a pressure-sensitive cell which are arranged connected to an electronic circuit, connected to which, in turn, are terminals of a connector by which a metal body is closed, in which the element and the cell are housed; the cell being housed in a cavity defined on one side of a plastic body through which electric conductors pass, which connect the element to the electronic circuit; the cell resting on a seal disposed between the cell and the base of the cavity, a wedge element placed over the cell which rests against the cell to compress the seal to thereby provide a seal around the mouth of a conduit through which the pressure of the fluid to be controlled is transmitted onto the cell.
Claims
1. A device for measuring the pressure and temperature of fluids comprising a metal body connected to a connector, the metal body housing a temperature-sensitive element and a pressure-sensitive cell arranged connected to an electronic circuit; the connector comprising terminals which connect to the electronic circuit; the metal body defining an inner diameter that coincides with a periphery of a plastic body and a wedge element; a cavity defined on one side of the plastic body through which electric conductors pass, connect the temperature-sensitive element to the electronic circuit, wherein the pressure-sensitive cell rests against a seal disposed between said pressure-sensitive cell and a base of the cavity; the wedge element placed over the pressure-sensitive cell which rests against said pressure-sensitive cell to compress the seal thereby providing a seal around a mouth of a conduit through which the pressure of the fluid to be controlled is transmitted onto the pressure-sensitive cell.
2. The device for measuring the pressure and temperature of fluids according to claim 1, wherein the wedge element has a flat face which rests against the pressure-sensitive cell, while an outer face has a surface of a cylindrical arc shape, which adjusts with respect to an inner surface of the metal body.
3. The device for measuring the pressure and temperature of fluids according to claim 1, wherein the pressure-sensitive cell is connected to the electronic circuit by means of clips which are soldered to said pressure-sensitive cell and which establish electrical contact with the electronic circuit.
4. The device for measuring the pressure and temperature of fluids according to claim 1, wherein the pressure-sensitive cell is connected to the electronic circuit by means of elastic bands which are soldered to the electronic circuit and which apply contact pressure to the pressure-sensitive cell.
Description
DESCRIPTION OF THE FIGURES
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
DETAILED DESCRIPTION OF THE INVENTION
(12) The object of the invention relates to a device for measuring temperature and pressure for controlling fluids in any application, integrating into a single mounted assembly, according to a conventional solution, such as the one represented by
(13) The connection of the temperature-sensitive element (1) to the electronic circuit (3) is established by means of electrical conductors (5), which are overmolded onto a plastic body (6).
(14) In a preferred embodiment, protruding from said plastic body (6) are ends of the electrical conductors (5) to be joined by means of soldering to the temperature-sensitive element (1), joining the same outside of the plastic body (6).
(15) In another preferred embodiment (see
(16) In a third preferred embodiment (see
(17) Likewise, on the other side, the electrical conductors (5) extend to connect to the electronic circuit (3). According to a preferred but non-limiting embodiment, the joint of the mentioned electrical conductors (5) with respect to the electronic circuit (3) is envisaged by means of springs (7).
(18) The temperature-sensitive element (1) can be uncovered outside of the plastic body (6) to have direct contact with the fluid to be controlled by means of the measuring device, or can be incorporated in a covering metal bulb (8) filled with conductive thermal grease that is in contact with the temperature-sensitive element (1).
(19) In this case, according to the invention, the pressure-sensitive cell (2) is arranged housed in a cavity (9) defined on the side of the plastic body (6), resting against a seal (10) which is included disposed between said pressure-sensitive cell (2) and the base of the mentioned housing cavity (9), around the mouth of a conduit (11) through which the pressure of the fluid to be controlled is transmitted onto the pressure-sensitive cell (2).
(20) A plastic wedge element (12) is incorporated on the outer face of the pressure-sensitive cell (2) which presses against the pressure-sensitive cell (2) so that the seal (10) is compressed, establishing the necessary seal to prevent the passage of the fluid being controlled to the electronic circuit (3).
(21) The functional assembly that integrates the temperature-sensitive element (1) and the pressure-sensitive cell (2) is arranged in a metal body (13), which is closed with the connector (4), the metal body (13) being defined with an inner diameter that coincides with the periphery diameter of the plastic body (6).
(22) Furthermore, the wedge element (12) has a flat face which rests against the pressure-sensitive cell (2), said wedge element (12) having, on the outer face, a surface in the form of a cylindrical arc, which adjusts with respect to the inner surface of the metal body (13), such that the wedge element (12) establishes, by the simple arrangement of the assembly, the necessary push against the pressure-sensitive cell (2) so that the seal (10) remains compressed, establishing a proper seal on the base of the cavity (9).
(23) In the constructive assembly of the measuring device, the pressure-sensitive cell (2) can electrically connect to the electronic circuit (3) by means of clips (14) soldered to the pressure-sensitive cell (2) which establish electric contact with the electronic circuit (3) by means of tabs that are inserted by pressure in metalized windows, as seen in the embodiment of
(24) The connector (4) has, in this case, terminals (16) which connect to the electronic circuit (3), the joint of said terminals (16) to the electronic circuit (3) directly established by soldering or, preferably, by means of springs (17), according to the embodiment of