专利摘要:
Pressure measuring device (1) comprising a box (20) extending around an electronic card (30) provided with a pressure sensor (40), - the box (20) delimiting with a first face (31 ) of the electronic card (30) a first sealed volume (3), - the housing (20) also delimiting with a second face (32) of the electronic card (30) opposite the first face (31) a second sealed volume (4), - the housing (20) comprising at least a first channel (24) putting the external medium (5) in fluid communication to the housing (20) and the first sealed volume (3), - the electronic card (30) comprising at least one second channel (33) putting the first volume (3) and the second volume (4) into fluid communication, - the connection between the housing (20) and the electronic card (30) being arranged to allow relative movement of the housing (20) and of the electronic card.
公开号:FR3085479A1
申请号:FR1857877
申请日:2018-08-31
公开日:2020-03-06
发明作者:Jean-Christophe Riou;Eric Bailly
申请人:Safran Electronics and Defense SAS;
IPC主号:
专利说明:

FIELD OF THE INVENTION
The present invention relates to pressure measurement and more particularly to pressure measurement in an aircraft wheel.
BACKGROUND OF THE INVENTION
Conventionally, an aircraft wheel comprises a cylindrical rim carrying a tire defining with the rim an interior volume filled with a fluid under pressure, generally air or a fluid comprising a majority of nitrogen as well as various constituents. air. The pressure of the air trapped in the wheel is measured after each landing using a pressure measurement device mounted on an inflation valve secured to the rim. The rim generally contains a stack of brake discs called a heat sink and which gives off a significant amount of heat when the aircraft is braked (temperatures above 50 degrees Celsius). This heat forces · to use specific materials and assembly techniques which make the manufacture of such a pressure sensor very expensive. In addition, the exposure of the Sensor to a high temperature during the measurement disturbs: the accuracy of the measurement.
OBJECT OF THE INVENTION
The object of the invention is to improve the accuracy of a pressure measuring device.
SUMMARY OF THE INVENTION
For this purpose and:., There is provided according to the invention, a pressure measuring device comprising a housing 30 extending around an electronic card provided with a pressure sensor. The housing delimits a first sealed volume with · a first: face- of the electronic card :. The case also defines a second sealed volume with a second face of the electronic 3: 5 card: opposite the first face. The housing comprises at least a first channel putting in fluid communication the medium external to the housing and the first sealed volume. The electronic card comprises at least a second channel placing the first volume and the second volume in fluid communication. The connection between the housing and the electronic card is designed to allow relative movement of the • housing and the electronic card.
A pressure measuring device is then obtained which performs a double filtering of the particles contained in the fluid whose pressure is measured as well as an effective mechanical decoupling. The succession of channels through which the fluid passes to reach the pressure sensor also limits the effect of the pressure and temperature transients. The housing also improves protection against mechanical attack. It is therefore possible to select a more precise pressure sensor than those of the prior art, the selection of which was essentially based on constraints relating to the good resistance to attack by the environment in which the device is placed.
Advantageously, the pressure sensor extends in the first sealed volume.
The filtering of the fluid whose pressure is measured is improved when the pressure sensor defines a sealed measurement enclosure and that said sealed measurement enclosure is in fluid communication with the second volume.
Advantageously also, the measuring device comprises means for processing the signal from the sensor and / or communication means extending in the first sealed volume. It should be noted that in this sensor, all of the electronics, the sensitive element 35 as well as the support accommodating the electronic components · are under pressure while being protected by a thin layer of Parylene with a thickness of 10 microns.
According to a preferred embodiment, a portion 5 of the electronic card · extends outside the third bowl.
The filtering of temperature and pressure transients as well as of particles present in the fluid whose pressure is measured is particularly effective when the first channel has a circular cross section whose first diameter is between 0.2 and 1.5 millimeters, preferably 1 millimeter and the second · channel has a circular section whose second diameter is between 100 and 300 micrometers, preferably 200 micrometers.
US Good protection of the second channel is obtained when it is metallized.
The protection of the sensor against freezing is improved when a conductive element is placed near the second channel and is connected to a first pole of a voltage generator, the second channel being connected to a second pole of said voltage generator. . The protection against freezing is further improved when the pressure measuring device comprises a device for heating the at least one second channel. An economical embodiment of such a device is feasible when the heating device comprises a resistive wire.
the production of the conductive element is economical · when the conductive element comprises an area 30 of the first face provided with a conductive coating.
The robustness of the device is improved when the connection between the housing and the electronic card includes means for damping vibrations. The realization of such a connection is economical when made by gluing.
The invention also relates to a tire comprising a device for ensuring pressure of the above type, a wheel provided with such a tire · as well as an aircraft equipped with such a wheel.
Other features and benefits of
1'invention will emerge on reading the following description of · particular embodiments · limiting ion s · 1 invention.
• BRIEF DESCRIPTION OF THE DRAWINGS
Reference will be made to the figures / annexed among which /:
- Figure 1 is a schematic exploded perspective view of a pressure measuring device according to a first embodiment of
The invention;
- Figure 2 is a schematic sectional view of the pressure measuring device of Figure 1;
- Figure: 3 is a detailed view of the pressure measuring device of Figure 1;
- Figure 4 is a schematic view · partial sectional view of a wheel · according to a first embodiment of the invention;
- Figure 5 is a schematic sectional view of a pressure measuring device according to a
2-5 second embodiment of the invention;
- Figure 6 is a schematic top view of the pressure measuring device of / Figure 5;
- Figure 7 is · a view · of detail of a third embodiment of the pressure measuring device according to the invention.
DETAILED DESCRIPTION OF THE INVENTION
Referring to Figures 1 to 3, the pressure measuring device · according to the invention, generally designated 1, comprises a housing 20 of phenolic resin, 3/5 here in the form of a straight cylinder, extending around a card electronics 30 provided with a pressure sensor 40 soldered on the first face 31 of the electronic card 30. The housing 20 comprises an upper cover 21 screwed onto a lower cover 22. The upper cover 21 and the lower cover 22 are arranged to make a peripheral counterbore 23 in which the electronic card 30 is fixed using a bead 2 of flexible silicone-based glue.
The upper cover 21 of the housing 20 defines with the first face 31 of the electronic card 30 a first sealed volume 3. The lower cover 22 · of the housing 20 defines with the second face 32 of the electronic card 30 opposite the first · face 31 a second sealed volume 4. The upper cover 21 comprises twenty first channels 24 which put the external medium 5 in the housing 20 and the first volume 3 into fluid communication. The first channels 24 have a circular section, the first diameter 24.1 of which is one millimeter. The electronic card 30 comprises twenty second channels 33 passing through and which put the first volume 3 and the • second volume in fluid communication. The second channels 33 have a circular section whose second diameter 33.1 is 200 micrometers.
The pressure sensor 40 extends in the first volume · 3 and includes a cover 41 of mechanical protection (wirebondings) · which defines a sealed enclosure · 42 for measurement. Here, the pressure sensor 40 is a • capacitive sensor comprising a membrane 43 extending parallel to the first face 31 and which is provided with a first electrode 44. The upper part; of the cover 41 constitutes a second electrode 45 of a capacitor 46. A third channel 34 puts the enclosure 42 in fluid communication with the · second volume 4. The third · channel 34 has a circular section whose second diameter 34.1 is 200 micrometers
The device 1 comprises a microcontroller 35 to which the first electrode A4 and the second electrode 46 as well as a radio transmitter / receiver 36. The microcontroller 35 and the radio transmitter / receiver 36 extend into the first volume 3. The first volume 3 also contains a recuperator 37 of kinetic energy secured to the card electronics 30. The recuperator 37 comprises a converter 38 which converts the kinetic energy captured into electrical energy · and sends it to a first battery 39. The energy recuperator 37 comprises, here, a ball 37.1 made of ferromagnetic material which can be move freely in the air gap of a coil 37.2. The first battery 39 supplies the microcontroller 35 · and the radio transmitter / receiver 36.
As visible in Figure 3, the second channels 33 are provided with a metallic coating 60 obtained by metallization. A ring 61 extends around each second channel 33 at a non-zero distance therefrom. Each ring 61 is, here, produced by depositing copper in a groove 62 machined in the electronic card 30 and is connected to a first pole 39.1 of the first battery 39, here a negative pole. Each coating 60 of each second channel 33 is · connected to a second pole 39.2 of the first · battery 39, here a positive pole. Advantageously, the upper surface 61.1 of the ring 61 extends substantially back from the first face 31 of the electronic card 30 in order to create a zone retention.
As visible in FIG. 4, the pressure measurement device 1 is placed inside a wheel 50 of an aircraft 100. The wheel 50 comprises a rim 51 on which a pneumatic tire 52 is mounted. The tire 52 defines with the rim 51 an interior volume 53 of the wheel 50 filled with pressurized air. The lower cover 22 of the pressure measurement device 1 is • glued to the inner face of a sidewall 52.1 of the tire 52. For reasons of measurement redundancy, it is possible to put several pressure measurement devices 1 into one same wheel 50.
The avionics equipment 101 of the aircraft 100 comprises a radio transmitter / receiver 102 tuned to the transmission / reception frequencies of the transmitter / receiver 36 of the pressure measurement device 1.
In operation, the air under pressure from the interior volume 53 penetrates through the first channels 24 into the first volume 3. The first channels 24 carry out a first filtering of the particles · (dust, filings, etc.;.) Which may be present. in the interior volume 53 ·. A second filtering of the pressurized air of the interior volume 53 is made by the · second channels 33 laws of passage; pressurized air from the interior volume 53 in the second channels 33. The air present in the second volume 4 then enters the enclosure 42 and acts on the membrane 43. Under the effect of the prevailing air pressure in the enclosure 42, the membrane 43 is deformed and the capacity of the capacitor 46 is modified. The microcontroller 35; converts capacity; capacitor 46 into a pressure value of the wheel 50 which is then sent using the radio transmitter / receiver 36 to the radio transmitter / receiver 102 of the aircraft 100 ;.
The first battery 39 establishes a voltage between the metallic coating 60 of the second channel 33 and the ring 61 which surrounds it, carrying out a vaporization by electrolysis of the water which could block the channel 33 ·. The diameter of the second channel 33 promotes water retention by capillarity and contributes; to prevent the passage of moisture from the air contained in ; the interior volume 53 towards the second volume 4. The retention of the humidity in the second channel 33 and the electrolysis device make it possible to limit the presence of water on the membrane 43) and to protect the device) 1 from the harmful consequences freezing when the aircraft 100 is in flight. In fact, the freezing of water on the sensitive element of a pressure sensor generally makes it inoperative and most often causes its destruction.
During the phases of rotation of the wheel 50, the recuperator 33 converts the kinetic energy - to which the pressure measuring device 1 is subjected into electrical energy which is stored - in the first battery 39.
The flexibility of the bead 2 of glue which links the box 20 and the electronic card 30 allows a relative movement of the box 20 and the electronic card 30 which makes it possible to limit the; transmission of vibrations and shocks from the wheel 50 to the electronic card: 30. The inventors have noted a reduction of at least a factor of 100 in the level of vibrations, shocks and mechanical stresses to which the electronic card 30 is subjected relative to bonding direct from the electronic card 30 on the side; 52:.) 1 of the wheel 50. The flexible adhesive generally has a hardness · of between 30 shore 00 and 60 shore A.
A pressure measurement device 1 is then obtained which performs a double filtering of particles; air whose pressure is measured as well as effective mechanical decoupling. The succession of channels through which the air passes to reach the sensor 40 also limits the effect of the pressure and temperature transients :. Finally, the device 1 for measuring depression has improved resistance to frost.
A second embodiment of the invention is shown in FIGS. 5 and 6. According to this embodiment, the electronic card 30 has a portion 30.1, here of substantially triangular shape, which extends outside the housing 20 and 1 / inside which extends an antenna wire 36.1 connected to the radio transmitter / receiver 36 ·.
According to a third embodiment shown in Figure 7, the ^ second channels 33 include a heating device, here in the form of a resistive wire 70 embedded in · the card 30, and extending in a spiral around each second channel 33. The wire 70 is connected to the poles of a second battery 71 by means of a current regulation unit 72 piloted by the micfocontroller 35. Advantageously, the second battery 71 is connected to the converter 38. Thus the resistive wire 70 allows the fluid passing through the second channels 33 to be heated from the: first volume 3 to the second volume 4 and to maintain its temperature above the dew point. This heating thus makes it possible to ensure that the fluid penetrating the enclosure 42 is dry while focusing any areas of gel formation in the first volume 3 at the periphery of the first channels 33 where the fluid is not · heated: .
• Of course, the invention is not limited to the embodiments described but covers any variant coming within the scope of the invention as defined by the claims.
In particular,
- although here the pressure measurement device ^ includes a phenolic resin case :, the invention also applies to other types of bootmakers such as for example a metal case, made of carbon fiber, made of thermoplastic material · , composite fiber, epoxy resin or other;
- Although here the housing is of cylindrical shape, the invention applies to other forties of cases such as for example · an ovoid shoemaker-, parallelepiped, or of any shape;
- although here the housing includes an upper cover screwed onto a lower cover ·, the invention also applies to other methods of assembling the elements of the shoemaker, such as for example ultrasonic welding, bonding, soldering or riveting. The housing can also be composed of a different number of elements such as for example a single element or more than two r
- Although here the housing comprises an upper cover and a lower cover assembled to each other, the invention also applies to a housing comprising two or more portions connected directly to the electronic card ·;
- although here the antenna is a part of the electronic card, this can be produced on the faces of the two covers and connected internally to the electronic card by means of a wire, a braid or an electrical conductive bonding;
- although here the electronic card: is fixed to the housing using a flexible bead of silicone-based glue, the invention also applies to other types of connection between the housing and the card electronic allowing relative movement of the housing and the electronic card, such as for example a -joint: synthetic or natural rubber or EPDM type added by screwing. Some of these materials also make it possible to dampen the vibrations 35 to which the device is subjected, such as for example bonding using neoprene glue;
- although here the upper cover comprises twenty first channels, the invention also applies to a different number of first channels such as for example a single channel, two to nineteen channels, or more ·· of twenty;
- although here the first channels have a circular section whose first diameter is equal to one millimeter, the invention also applies to first channels of different section such as for example a square or any section, as well as to a first diameter between · 0.2 and 1.5 mm or may be greater than or less than one millimeter;
- although here the electronic card comprises twenty second channels, the invention also applies to a different number of second channels such as for example a single channel, two to nineteen channels, or more than twenty;
- although the second channels here have a circular section whose second diameter is equal to 200 micrometers, the invention also applies to second · channels of different section such as for example a square or any section, as well as a second diameter between 100 and 300 micrometers or which may be greater or less than 200 micrometers;
- Although here the pressure measurement device comprises a microcontroller, the invention also applies to other means of signal processing such as - for example an FPGA, logic gates or a microprocessor;
- although here the microcontroller, as well as the other components, are soldered onto an electronic card, the invention also applies to
others means of connection of components at circuit of order like through example of connections through pinout, by sintering or through brazing sure a support of type: PCB, or of
wired components;
- although here the pressure measurement device comprises a radio transmitter / receiver, the invention also applies to other types of wireless transmission techniques such as for example a 2G, 3G, 4G, 5G protocol, LoRa, -edge, Wi-Fi, Bluetooth, ultrasound or I0T type;
- although here the pressure measuring device comprises an inductive kinetic energy converter, the invention also applies to other types of energy converters such as for example a kinetic energy converter of piezoelectric type or a thermal energy converter;
- although here the measuring device is placed in an aircraft wheel / the invention also applies to other: types of wheels: of a vehicle such as, for example, trucks or cars;
- Although here the tire is filled with compressed air, the invention also applies to tires filled with other types of pressurized fluid such as, for example, gases or liquids;
- although here the pressure sensor is of the capacitive type, the invention also applies to other types of pressure sensors such as for example a resistive, inductive, piezoresistive, piezoelectric or resonant sensor;
- although here the components of the device are
35 : all implants on the first face of the electronic card, the invention also applies to a different arrangement of the components, such as for example an implantation of all or part of the components of the device on the second face 5 of the electronic card ;
- although here the second channels are provided with a metal coating obtained by metallization, the invention also applies to other means of applying a metal coating · on the second channels ·, such as for example a crimping a metal jacket or applying conductive paint;
- although here a copper ring received in a groove of the first surface: of the electroethical card extends around each -second channel, the invention also applies to other type of conductive element placed at proximity to the second ·· channel such as · for example a ring of square or arbitrary shape, metallization of the surface of the first electronic card or printing using a conductive ink;
- although the pressure measurement device here includes a · battery, the invention also applies to other types of voltage generator such as for example a battery · or a capacitor;
- although here the element: conductor is connected to a negative pole of the voltage generator and the coating of each second channel is connected to the positive pole of the voltage generator, the invention also applies to an inversion of the polarities: logout;
although here the sensor is placed in a tire ·, the pressure measurement device 35 can also be used for the measurement of the pressure prevailing in other types of chambers such as for example in a wind tunnel or in a ventilation
- Although the electronic card is received in a peripheral counterbore of the housing, the invention also applies to other types of connection between the housing and the electonic card such as, for example, one or more elastomer pads. extending from the first surface of the electronic card to the upper cover of the housing and one or more elastomeric pads extending from the second surface of the electronic card to the lower cover of the housing;
- although here the card portion extending outside the housing is a rigid portion which carries an antenna, the card portion · can also be flexible and / or contain other types of conductive elements in relation to the components which are under the protective housing;
- the pressure measurement device can also include a temperature sensor to transmit the temperature - and / or carry out temperature compensation for the measurement of the pressure sensor, the temperature measurement can be carried out by a dedicated sensor or even be measured on a piezoresistive sensor by measuring the input resistance of the sensitive element or by any other combination of resistors of a piezoresistive sensor, the result of which will only provide an image of the temperature, that of the pressure being eliminated in the combination achieved (tearing resistance in longitudinal or transverse giving respectively positive and negative gauge factors);
- Although here 'all the second channels comprise a resistive wire, the invention also applies to a measuring device in which only a part or only one of the second channels comprises a heating device. The heating device can also equip the third channel;
- although here a resistive wire · is embedded in the electronic card, the invention also applies to · other types · of heating device such as for example a resistive track printed on the; second channel, induction heating of the metallization of the second channel;
- although here the resistive wire is supplied · by a second battery · connected to a current regulation unit, the invention also applies to other energy sources such as - for example the first · battery, and other types of adjustment control of the heating device such as, for example, servo-control of the device using a temperature sensor.
权利要求:
Claims (16)
[1" id="c-fr-0001]
1. Pressure measuring device (1) comprising a housing (20) extending around an electronic card (30) provided with a pressure sensor (40),
- the housing (20) delimiting with a first face (31) of the electronic card (30) uh first sealed volume (3),
the housing (20) also delimiting with a second face (32) of the electronic card (30) opposite the first face (31) a second sealed volume (4),
the housing (20) comprising at least a first channel (24) putting the external medium (5) in fluid communication with the third bowl (20) and the first sealed volume (3),
the electronic card (30) comprising at least one second channel (33) putting the first volume (3) and the second volume (4) into fluid communication,
- The connection between the housing (20) and the electronic card (30) being arranged to allow relative movement of the housing (20) and the electronic card (30).
[2" id="c-fr-0002]
2. Device (1) for measuring pressure according to claim 1, in which the pressure sensor (40) extends in the first sealed volume (3).
[3" id="c-fr-0003]
3. Device (1) for measuring pressure according to any one of the preceding claims, in which the pressure sensor (40) defines a sealed enclosure (42) for measurement, said sealed enclosure (42) for measurement being in communication fluidics with the second volume (4).
[4" id="c-fr-0004]
4. Device (1) for measuring the resistance according to any one of the preceding claims, comprising means for processing (35) the signal from the sensor (40) and / or communication means (36) extending in the first sealed volume (3).
[5" id="c-fr-0005]
5. Device (1) for measuring pressure according to any one of the preceding claims, in which a portion (30.1) of the electronic card (30) extends
5 out of the housing (20).
[6" id="c-fr-0006]
6. Device (1) for measuring pressure according to any one of the preceding claims, in which the first channel (24) has a circular section whose first diameter (2 4.1) is between 0.2 and 1.5
10 millimeters, preferably 1 millimeter and the second channel (33) has a circular section whose second diameter (33.1) is between 100 and 300 micrometers, preferably 200 micrometers.
[7" id="c-fr-0007]
7. Device (1) for measuring pressure according to any of the; claims; previous ·, in which the second channel (33) is metallized.
[8" id="c-fr-0008]
8. Device (1) for measuring pressure according to claim 7, in which an element; conductor (61) is placed near the second channel (33) and is connected
20 to a first pole (39.1) of a voltage generator (39), the second channel (33) being; connected to a second; pole (39.2) of said voltage generator; (39).
[9" id="c-fr-0009]
9. Device (1) for measuring pressure according to claim 8, in which the conductive element (61)
25 comprises an area of the first face (31) of the electronic card (30) provided with a conductive coating.
[10" id="c-fr-0010]
10. Device (1) for measuring pressure according to any one of the preceding claims ;, wherein the connection between the housing (20) and the card
30 electronics (30) includes means for damping vibrations.
[11" id="c-fr-0011]
11. Device (1) for measuring pressure according to one; any one of the preceding claims, in which the connection between the housing (20) and the card
35 electronics (30) is; a; bond bonded.
[12" id="c-fr-0012]
12. Device (1) for measuring pressure according to any one of the preceding claims, comprising a device for heating the at least one second channel (33),
5
[13" id="c-fr-0013]
13. Device (1) for measuring pressure according to claim 12, wherein the heating device comprises a resistive wire (70).
[14" id="c-fr-0014]
14. A tire (52) comprising a device (1) for measuring pressure according to any one of
10 previous claims.
[15" id="c-fr-0015]
15. Wheel (50) comprising a tire (52) according to claim 14.
[16" id="c-fr-0016]
16. Aircraft (100) comprising a wheel (50) according to claim 15.
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同族专利:
公开号 | 公开日
WO2020043744A1|2020-03-05|
CA3111048C|2021-12-14|
FR3085479B1|2021-09-17|
CA3111048A1|2020-03-05|
US20210348977A1|2021-11-11|
EP3844469A1|2021-07-07|
US11169042B1|2021-11-09|
CN113167674A|2021-07-23|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题
US20130055821A1|2011-09-06|2013-03-07|Honeywell International Inc.|Packaged sensor with multiple sensors elements|
US20170158001A1|2013-08-02|2017-06-08|Shanghai Baolong Automotive Corporation|Tire pressure monitoring sensor|
WO2016204389A1|2015-06-15|2016-12-22|주식회사 아이티엠반도체|Pressure sensor device and manufacturing method therefor|
US20080110250A1|2006-10-20|2008-05-15|Jones Russell F|Tire pressure monitoring device, system and method|
WO2013153088A1|2012-04-11|2013-10-17|Huf Hülsbeck & Fürst Gmbh & Co. Kg|Tyre module with piezo‑electric transducer and tyre equipped therewith|
GB2540414A|2015-07-16|2017-01-18|Airbus Operations Ltd|Tyre pressure sensor device|
CN107543649A|2016-06-26|2018-01-05|成都凯天电子股份有限公司|Hot gas deicing stagnation pressure pick-up|FR3108402A1|2020-03-22|2021-09-24|Safran|Device for measuring an operating parameter of a tire|
WO2021191166A1|2020-03-22|2021-09-30|Safran|Device for measuring tyre pressure|
FR3108403A1|2020-03-22|2021-09-24|Safran|Tire pressure measuring device|
法律状态:
2019-07-22| PLFP| Fee payment|Year of fee payment: 2 |
2020-03-06| PLSC| Publication of the preliminary search report|Effective date: 20200306 |
2020-07-21| PLFP| Fee payment|Year of fee payment: 3 |
2021-06-04| TQ| Partial transmission of property|Owner name: COMPAGNIE GENERALE DES ETABLISSEMENTS MICHELIN, FR Effective date: 20210426 Owner name: SAFRAN, FR Effective date: 20210426 Owner name: SAFRAN LANDING SYSTEMS, FR Effective date: 20210426 Owner name: SAFRAN ELECTRONICS & DEFENSE, FR Effective date: 20210426 |
2021-07-22| PLFP| Fee payment|Year of fee payment: 4 |
优先权:
申请号 | 申请日 | 专利标题
FR1857877A|FR3085479B1|2018-08-31|2018-08-31|UNDER-HOUSING PRESSURE SENSOR|FR1857877A| FR3085479B1|2018-08-31|2018-08-31|UNDER-HOUSING PRESSURE SENSOR|
CA3111048A| CA3111048C|2018-08-31|2019-08-27|Encased pressure sensor|
EP19758735.5A| EP3844469A1|2018-08-31|2019-08-27|Encased pressure sensor|
US17/271,884| US11169042B1|2018-08-31|2019-08-27|Encased pressure sensor for measuring pressure in an aircraft wheel|
CN201980069533.6A| CN113167674A|2018-08-31|2019-08-27|Closed pressure sensor|
PCT/EP2019/072890| WO2020043744A1|2018-08-31|2019-08-27|Encased pressure sensor|
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