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US3393612A - Pressure responsive device - Google Patents

Pressure responsive device
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Publication number
US3393612A
US3393612AUS549502AUS54950266AUS3393612AUS 3393612 AUS3393612 AUS 3393612AUS 549502 AUS549502 AUS 549502AUS 54950266 AUS54950266 AUS 54950266AUS 3393612 AUS3393612 AUS 3393612A
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Prior art keywords
piston
diaphragm
pressure
cylinder
housing
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Expired - Lifetime
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US549502A
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Joseph E Gorgens
Levine Walter Eli
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Dresser Industries Inc
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Dresser Industries Inc
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Priority to US549502ApriorityCriticalpatent/US3393612A/en
Priority to GB18095/67Aprioritypatent/GB1143153A/en
Priority to DE19671673561prioritypatent/DE1673561A1/en
Priority to NL6705869Aprioritypatent/NL150590C/xx
Priority to FR105491Aprioritypatent/FR1522015A/en
Priority to BE698238Dprioritypatent/BE698238A/xx
Application grantedgrantedCritical
Publication of US3393612ApublicationCriticalpatent/US3393612A/en
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July 23, 1968 J. E. GORGENS ET AL 3,393,612
PRESSURE RESPONSIVE DEVICE Filed May 12, 1966 5 n@ a @9mm n wrm N E Glfw. n,| f Fam Zn A IDW A 1 s @we w 2 4 6 ,d 2/2 j l'/gunl United States Patent O 3,393,612 PRESSURE RESPONSIVE DEVICE Joseph E. Gorgens, Stratford, and Walter Eli Levine, Hamden, Conn., assignors to Dresser Industries, Inc., Dallas, Tex., a corporation of Delaware Filed May 12, 1966, Ser. No. 549,502 7 Claims. (Cl. 92-101) ABSTRACT F THE DISCLOSURE A pressure operable electrical switch including a piston movable in response to a condition pressure applied against a contiguous pressure responsive diaphragm. The piston is maintained directionally aligned by a connected and laterally secured leaf spring and transmits its movement to the switch controller through a coaxial rod aligned in the face of the pistou. Pressure sensitivity ranges are interchangeable by substituting a piston having different effective dimensions.
This invention resides in an improved pressure-responsive means for actuating a sensitive control -device such as a switch.
In process control applications it is common to turn a switch on or off by means such as a bellows or diaphragm which is responsive to the pressure of a iiuid medium in a vessel or conduit. In certain cases the accuracy and sensitivity of the device `are critical, and hence it is necessary to avoid all mechanical elements which can introduce the slightest error or time lag into the responsive system. Friction between rubbing parts, for example, can introduce such error. A simple form of pressure responsive device comprises a fluid tight housing Ihaving a diaphragm exposed to line pressure at `one side, and a plunger or the like at the other side of the diaphragm for transmitting pressure-induced displacement of the diaphragm t-o the switch for operation thereof. The means of connecting and guiding the plunger or piston as heretofore arranged has been found to be capable of introducing a small but objectionable percentage yof inaccuracy into response sensitivity of the entire unit. Accordingly, a first object of this invention is to provide a pressure-responsive device wherein these adverse influences on the accuracy of the instrument are effectively eliminated.
A further object of this invention involves the adaptability of a commercial device to operation in response to pressures in a variety of pressure ranges. For example, in one application a device may be required to operate in response to changes in pressure within the range of l to 50 p.s.i., whereas in another application this range may extend up to pressures in the region of 3,000` p.s.i. In most cases, it is `desirable that provision be made to enable a change of the operating pressure range of the device in the lield by personnel who are not specially trained. In the common types of devices produ-ced heretofore, this change has necessarily involved practically complete disassembly and the careful substitution of properly matched sets of loose parts, thereby increasing the possibility of errors which can lead to malfunction and reduce reliability.
Accordingly, a further object of the invention is to provide a device of the character described, in which the operating pressure response r-ange can be changed very simply, without the necessity of complete disassembly and without handling sets of individual parts.
Briefly, in :accordance with this invention, the above objects are attained by providing a permanently integrated piston and cylinder unit wherein the piston is movably 3,393,612 Patented July 23, 1968 ICC imounted in spaced and centered relation within the fixed cylinder by means of a symmetrical leaf spring. Because of this simple spring mounting, there is no frictional contact between the piston and any other parts, and thus any error -due to such contact is completely eliminated. The diaphragm overlies the cylinder and acts against the exposed area of the piston therein in opposition to a coil spring |acting Iagainst the other end of the piston, and changes in the force balance in response to changes in lluid pressure are transmitted to operate a sensitive switching means or other control element. A preassembled unit having a relatively larger piston area is used in a device operating `at low fluid pressures, and one having a quite small area is used for high pressures. However, the exterior dimensions -of all such units are the same, so that they are completely interchangeable. As will be seen here after, the installation of a permanently :assembled unit having a piston size matched to a given operating pressure is all that is involved in adapting a device for service at that pressure, and this installation does not necessitate its complete disassembly.
Further objects, advantages and details will become evident from the following description when read in conjunction with the accompanying drawings, in which:
FIGURE 1 is a partially sectional view of a complete pressure responsive switch mechanism according to this invention;
FIGURE 2 is a side view of the structure shown in FIGURE 1;
FIGURE 3 is an enlarged axial section through the portion of the mechanism containing the piston and cylin- `der unit, these parts being shown under a first condition;
FIGURE 4 is a view as in FIGURE 3, except showing a second condition wherein pressure has increased;
FIGURE 5 is an axial section through a piston and cylinder unit having a relatively smaller exposed area, being adapted for high pressure service;
FIGURE 6 is la perspective view of the symmetric leaf spring for mounting the piston in the cylinder in freely centered relation.
Referring now to the drawings, in the specifically illustrated embodiment of the invention a metal casting provides a box-like housing 2 in which asensitive switch 4 is mounted.Switch 4 has an actu-ating plunger 6r, the slight movement of which (measured in thousandths of an inch) serves to open and close one or more sets of switch contacts. At one side of thehousing 2 there is formed a neck 8 having a bore defining -a throughpassage 10. At the bottom of the neck 8 there is a larger cylindrical counterbore 12 which terminates in a circular flat seat 14. Ahead 16, threaded as shown to accommodate an appropriate conduit or fitting, has acentral liuid passage 20 therein and is adapted to be drawn tightly against 4the housing neck 8 by means of a series ofcap screws 18.
Referring to FIGURES 3-6, the significant feature of this device resides in an assembled unit comprising apiston 22, acylinder ring 24, and a spring means 26 in the form of a symmetrical spider-shaped metal element. Thecylinder 24 is annular and 'has an L-shaped rim, the radially inwardly directed flange of which presents a llat seating surface 28. Thepiston 22 is stepped in two diameters, the larger being indicated at 30 and the smaller being indicated at 32. In the radial dimension, there is a clearance c between the piston and cylinder of at least .002 to .050 of an inch to insure complete freedom from contact between these two parts. Referring to FIGURE 6, thespring 26, which is formed of thin gauge spring sheet metal, is stamped in -a form having an annularouter ring 29, symmetrically arrangedspokes 27, and `an inner yhub 31. In
the assembly of this three-part unit, a thin-flange orrim 33 is staked and deformed over the inner ring 31 to secure the spring and piston in firmly clamped relation. Theouter ring 29 is prefer-ably tack-welded or otherwise secured to thecylinder 24. By virtue of these connections, thecylinder 22 is held in centered and spaced relation within thecylinder 24, but is axially movable therein within the limits :illustrated in FIGURE 3. Overlying the lower parts of thepiston 22 andcylinder 24 is a fluidirnpervious rubber diaphragm 34, sealed and clamped at its edges by an O-ring 36. The pressure of a fluid medium communicating through thepassage 20\ acts againstdiaphragm 34. The total force ytransmitted to thepiston 22 is a function of the diameter D1 of the piston (the notation l being intended to mean large), as is discussed more fully hereafter.
At `the other side of thepiston 22, there is adisc 38 having a conicallypointed end 42 which centrally engages thepiston 22 within a conicalcavity 40u Disc 38 has flat extensions `44 providing a seat anchoring one end of acompression coil spring 50. The opposite end ofspring 50 acts against a fitting 52 threaded into the neck 8. It will be seen, therefore, thatspring 50urges piston 22 downwardly against the seating surface 28 in opposition to the force against thepiston 22 by fiuid pressure at the outer side ofdiaphragm 34. Displacement ofpiston 22 from that position is transmitted to the switch actuatingplunger 6 lby apush rod 48 received in acentral cavity 46 in thedisc 38. In operation, thepiston 22 will be lifted from the seating surface 2S andswitch 4 will be actuated only when the cumulative force of the fluid pressure transmitted across the diameter D1 exceeds the downward force exerted principally by the spring 5t). This critical pressure level is, therefore, a function of the diameter D1 and the spring constant ofspring 50;
Referring to FIGURE 5, there is shown a piston and cylinder unit which is basically the same as that shown in FIGURES 3 and 4, except that the exposed piston diameter Ds of the piston 22' is -much smaller, and the radially inward extent of the flange of thecylinder 24 is correspondingly greater. Hence, it follows that the operating pressure range of this device can be changed simply by interchanging units having exposed piston diameters ranging between D1 (large) and Ds (small). Depending upon the particular operating specifications, of course, thesame spring 50 =may be suitable for use with a variety of different pist-on and cylinder units, but may also be change-d if desired.
In operation, a unique advantage of the device described is that all that need be done to change the operating pressure range is to remove thescrews 18,diaphragm 34 andring 36, and to substitute another piston and cylinder unit having an exposed piston diameter selected to effect the desired performance. Because thepiston 22,cylinder 24 andspring 26 are permanently preassembled, these parts cannot become mismatched and the device is essentially foolproof against error on the part of field personnel. Secondly, because the piston and cylinder do not touch in the course of displacement axially, there is an absence of rubbing contact which can introduce frictional force which would be reflected as errors in operation of the device. In summary, as compared to prior art devices, the device provided according to this invention is more simple, more accurate and more easily adjustable for operation at different pressure ranges.
It will be understood that various departures from the specifically disclosed embodiment of the invention can be effected without departing from the scope thereof as defined by the following claims.
What is claimed is:
1. A pressure responsive device comprising a housing, a yieldable diaphragm mounted in said housing, said Ihousing providing a chamber at one side of said diaphragm adapted to be connected to a source of fluid pressure, a piston having a first face engageable with said diaphragm at the other side thereof, symmetrically varranged leaf spring means -connected to and extending laterally from said piston, said connected leaf spring means includes a plurality of spoke-like elements extending radially along the second face of the piston, said spring means being also laterally secured to said housing to directionally maintain the piston for movement responsive to fluid pressure at said one side -of the diaphragm, means resiliently urging said piston against said diaphragm, and means directionally aligned by the second face of said piston for transmitting movement of said piston to a sensitive control device, said piston being spaced from and free of contact with the surface of laterally surrounding structure.
2. A pressure responsive device comprising a housing, a yieldable diaphragm mounted in said housing, said housing providing a chamber at one side of said diaphragm 4adapted to be connected to a source of fluid pressure, a piston having its face engageable with said diaphragm at the other side thereof, symmetrically arranged leaf spring means including a plurality of radially extending spoke-like elements connected to land extending laterally from the side of the piston away from sai-d diaphragm and positioning the piston for movement responsive to fluid pressure at said one side of the diaphragm, means resiliently urging said piston against said diaphragm, a cylinder ring stationarily -mounted within said housing enclosing said piston at the sides but being laterally spaced therefrom, said cylinder ring being connected to the other ends of said spoke-like elements, and means for transmitting movement of said piston to a sensitive control device.
3. A device according toclaim 2, `wherein said cylinder ring has an outer face engageable with portions of said other side of the ldiaphragm surrounding the area of engagement with said piston.
4. A device according toclaim 2, wherein said piston, cylinder ring and spring means are integrally secured together to constitute a unitary removable land interchangeable assembly, said housing including a removable head portion defining a wall of said chamber whereby removal of said head permits removal of said unitary assembly.
5. A pressure responsive device comprising a housing, a yieldable diaphragm mounted in said housing, said housing providing a chamber at one side of said diaphragm adapted to be connected to a source of fluid pressure, a cylinder ring stationarily mounted within said housing against the -other side of said diaphragm and having a central opening therein, a disc-shaped piston movable within -said opening in radially closely spaced and centered relation thereto and contacting said other side of the diaphragm, a leaf spring element connected between the central portion of the piston and the cylinder ring, said element resiliently maintaining said closely spaced and centered relation of the piston and cylinder ring, means resiliently urging said piston against said other side of the diaphragm, and means transmitting movement of said piston to a sensitive control device, said piston, cylinder ring and leaf spring element constituting a unitary removable and interchangeable assembly.
6. A device according to claim 5, wherein said cylinder ring has an L-shaped cross-section, the lower side of the radially inwardly directed flange of said L being in contact with the diaphragm and the upper side providing a seating surface on which said piston is bottomed, said piston Ihaving a central portion projecting through the cent-ral opening defined by said flange, the area of said portion being exposed to the pressure force transmitted by said diaphragm.
7. A device according toclaim 6, wherein said housing includes a removable section defining the chamber at said one side of the diaphragm and clamping said diaphragm in overlying relation to the piston and cylinder ring assembly, said diaphragm and assembly being removable after removal of said housing section.
(References on following page) References Cited UNITED STATES PATENTS 1,146,271 5/1957 France.
Young 73-408 739,398 10/1955 Great Britain.
Van Nest 92--101 5 Meisenheimer et aL 200 83 51 I. C. COHEN, Asslstanz Exammer.
Prell 92`-101 6 FOREIGN PATENTS
US549502A1966-05-121966-05-12Pressure responsive deviceExpired - LifetimeUS3393612A (en)

Priority Applications (6)

Application NumberPriority DateFiling DateTitle
US549502AUS3393612A (en)1966-05-121966-05-12Pressure responsive device
GB18095/67AGB1143153A (en)1966-05-121967-04-19Pressure responsive device
DE19671673561DE1673561A1 (en)1966-05-121967-04-25 Control device responsive to the pressure of a control pressure medium
NL6705869ANL150590C (en)1966-05-121967-04-26
FR105491AFR1522015A (en)1966-05-121967-05-08 Pressure sensitive actuator
BE698238DBE698238A (en)1966-05-121967-05-09

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US549502AUS3393612A (en)1966-05-121966-05-12Pressure responsive device

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US3393612Atrue US3393612A (en)1968-07-23

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US549502AExpired - LifetimeUS3393612A (en)1966-05-121966-05-12Pressure responsive device

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US (1)US3393612A (en)
BE (1)BE698238A (en)
DE (1)DE1673561A1 (en)
FR (1)FR1522015A (en)
GB (1)GB1143153A (en)
NL (1)NL150590C (en)

Cited By (40)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3581572A (en)*1969-06-061971-06-01Rosemount Eng Co LtdExtruder pressure sensor
US3799037A (en)*1972-03-141974-03-26H SchmidtValve attachment
US3898405A (en)*1974-01-111975-08-05Ernesto Juan WeberDiaphragm pressure switch with balance plate and adjustable springs
US3911238A (en)*1973-12-061975-10-07Automatic Switch CoCondition responsive control device with capacity for independent adjustment of control points and transducer therefor
US3939758A (en)*1972-09-201976-02-24Jacques FaisandierPressure sensor
US3946176A (en)*1974-12-041976-03-23Dresser Industries, Inc.Differential pressure switch
US4200776A (en)*1978-11-131980-04-29General Electric CompanyControl device with grain oriented snap disk
US4287780A (en)*1978-11-131981-09-08General Electric CompanySnap-action member
US4351105A (en)*1979-08-061982-09-28General Electric CompanyMethod of making a control device
US4569378A (en)*1982-12-131986-02-11National Instrument Company Inc.Filling machine with tandem-operated diaphragm filling units
FR2576687A1 (en)*1985-01-251986-08-01Salou AlainSensor with switching threshold (compatible with overpressures)
FR2591797A1 (en)*1985-12-131987-06-19Honda Motor Co Ltd PRESSURE CONTROL SWITCH
US4882459A (en)*1987-11-021989-11-21Square D CompanyPressure sensitive switch having rugged construction and accurate trip pressure settings
EP0552591A3 (en)*1992-01-241993-11-24Cesare GalloneSafety pressure sensor, in particular for microswitches
US7658196B2 (en)2005-02-242010-02-09Ethicon Endo-Surgery, Inc.System and method for determining implanted device orientation
US7775215B2 (en)2005-02-242010-08-17Ethicon Endo-Surgery, Inc.System and method for determining implanted device positioning and obtaining pressure data
US7775966B2 (en)2005-02-242010-08-17Ethicon Endo-Surgery, Inc.Non-invasive pressure measurement in a fluid adjustable restrictive device
US7844342B2 (en)2008-02-072010-11-30Ethicon Endo-Surgery, Inc.Powering implantable restriction systems using light
US20100300863A1 (en)*2007-05-292010-12-02Norgren GmbhPressure switch with an integrated diaphragm and switch
US7927270B2 (en)2005-02-242011-04-19Ethicon Endo-Surgery, Inc.External mechanical pressure sensor for gastric band pressure measurements
US8016744B2 (en)2005-02-242011-09-13Ethicon Endo-Surgery, Inc.External pressure-based gastric band adjustment system and method
US8016745B2 (en)2005-02-242011-09-13Ethicon Endo-Surgery, Inc.Monitoring of a food intake restriction device
US8034065B2 (en)2008-02-262011-10-11Ethicon Endo-Surgery, Inc.Controlling pressure in adjustable restriction devices
US8057492B2 (en)2008-02-122011-11-15Ethicon Endo-Surgery, Inc.Automatically adjusting band system with MEMS pump
US8066629B2 (en)2005-02-242011-11-29Ethicon Endo-Surgery, Inc.Apparatus for adjustment and sensing of gastric band pressure
US8100870B2 (en)2007-12-142012-01-24Ethicon Endo-Surgery, Inc.Adjustable height gastric restriction devices and methods
US8114345B2 (en)2008-02-082012-02-14Ethicon Endo-Surgery, Inc.System and method of sterilizing an implantable medical device
US8142452B2 (en)2007-12-272012-03-27Ethicon Endo-Surgery, Inc.Controlling pressure in adjustable restriction devices
US8152710B2 (en)2006-04-062012-04-10Ethicon Endo-Surgery, Inc.Physiological parameter analysis for an implantable restriction device and a data logger
US8187162B2 (en)2008-03-062012-05-29Ethicon Endo-Surgery, Inc.Reorientation port
US8187163B2 (en)2007-12-102012-05-29Ethicon Endo-Surgery, Inc.Methods for implanting a gastric restriction device
US8192350B2 (en)2008-01-282012-06-05Ethicon Endo-Surgery, Inc.Methods and devices for measuring impedance in a gastric restriction system
US8221439B2 (en)2008-02-072012-07-17Ethicon Endo-Surgery, Inc.Powering implantable restriction systems using kinetic motion
US8233995B2 (en)2008-03-062012-07-31Ethicon Endo-Surgery, Inc.System and method of aligning an implantable antenna
US8337389B2 (en)2008-01-282012-12-25Ethicon Endo-Surgery, Inc.Methods and devices for diagnosing performance of a gastric restriction system
US8377079B2 (en)2007-12-272013-02-19Ethicon Endo-Surgery, Inc.Constant force mechanisms for regulating restriction devices
US20130305832A1 (en)*2012-05-152013-11-21Chrysler Group LlcHigh pressure visual indicator
US8591532B2 (en)2008-02-122013-11-26Ethicon Endo-Sugery, Inc.Automatically adjusting band system
US8591395B2 (en)2008-01-282013-11-26Ethicon Endo-Surgery, Inc.Gastric restriction device data handling devices and methods
US8870742B2 (en)2006-04-062014-10-28Ethicon Endo-Surgery, Inc.GUI for an implantable restriction device and a data logger

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US2319011A (en)*1940-08-201943-05-11Smith & Sons Ltd SResilient diaphragm pressure operated device
GB739398A (en)*1953-08-311955-10-26Boulton Aircraft LtdImprovements in or relating to capsules for converting a fluid pressure into a load
FR1146271A (en)*1956-03-261957-11-08Applic Mach Motrices Pressure detector
US3043929A (en)*1960-02-251962-07-10George G GuthriePressure actuated switch
US3119910A (en)*1959-10-021964-01-28Jr Daniel T MeisenheimerPressure switch
US3254573A (en)*1963-10-031966-06-07Motorola IncSupport for pressure measuring diaphragm

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US19177A (en)*1858-01-19Moses m
US2223976A (en)*1938-12-031940-12-03Gen ElectricPressure responsive device
US2319011A (en)*1940-08-201943-05-11Smith & Sons Ltd SResilient diaphragm pressure operated device
GB739398A (en)*1953-08-311955-10-26Boulton Aircraft LtdImprovements in or relating to capsules for converting a fluid pressure into a load
FR1146271A (en)*1956-03-261957-11-08Applic Mach Motrices Pressure detector
US3119910A (en)*1959-10-021964-01-28Jr Daniel T MeisenheimerPressure switch
US3043929A (en)*1960-02-251962-07-10George G GuthriePressure actuated switch
US3254573A (en)*1963-10-031966-06-07Motorola IncSupport for pressure measuring diaphragm

Cited By (46)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3581572A (en)*1969-06-061971-06-01Rosemount Eng Co LtdExtruder pressure sensor
US3799037A (en)*1972-03-141974-03-26H SchmidtValve attachment
US3939758A (en)*1972-09-201976-02-24Jacques FaisandierPressure sensor
US3911238A (en)*1973-12-061975-10-07Automatic Switch CoCondition responsive control device with capacity for independent adjustment of control points and transducer therefor
DE2519554A1 (en)*1973-12-061976-11-18Automatic Switch Co TAX RESPONDING TO OUTER CONDITIONS OR MONITORING DEVICE AND CONVERTER OR CONVERTER OR CONVERTER FOR IT
US3898405A (en)*1974-01-111975-08-05Ernesto Juan WeberDiaphragm pressure switch with balance plate and adjustable springs
US3946176A (en)*1974-12-041976-03-23Dresser Industries, Inc.Differential pressure switch
DE2553327A1 (en)*1974-12-041976-06-10Dresser Ind DIFFERENTIAL PRESSURE SWITCH
US4200776A (en)*1978-11-131980-04-29General Electric CompanyControl device with grain oriented snap disk
US4287780A (en)*1978-11-131981-09-08General Electric CompanySnap-action member
US4351105A (en)*1979-08-061982-09-28General Electric CompanyMethod of making a control device
US4569378A (en)*1982-12-131986-02-11National Instrument Company Inc.Filling machine with tandem-operated diaphragm filling units
FR2576687A1 (en)*1985-01-251986-08-01Salou AlainSensor with switching threshold (compatible with overpressures)
FR2591797A1 (en)*1985-12-131987-06-19Honda Motor Co Ltd PRESSURE CONTROL SWITCH
US4759222A (en)*1985-12-131988-07-26Honda Giken Kogyo Kabushiki KaishaPressure responsive switch
US4882459A (en)*1987-11-021989-11-21Square D CompanyPressure sensitive switch having rugged construction and accurate trip pressure settings
EP0552591A3 (en)*1992-01-241993-11-24Cesare GalloneSafety pressure sensor, in particular for microswitches
US7927270B2 (en)2005-02-242011-04-19Ethicon Endo-Surgery, Inc.External mechanical pressure sensor for gastric band pressure measurements
US8066629B2 (en)2005-02-242011-11-29Ethicon Endo-Surgery, Inc.Apparatus for adjustment and sensing of gastric band pressure
US7775966B2 (en)2005-02-242010-08-17Ethicon Endo-Surgery, Inc.Non-invasive pressure measurement in a fluid adjustable restrictive device
US7775215B2 (en)2005-02-242010-08-17Ethicon Endo-Surgery, Inc.System and method for determining implanted device positioning and obtaining pressure data
US8016745B2 (en)2005-02-242011-09-13Ethicon Endo-Surgery, Inc.Monitoring of a food intake restriction device
US7658196B2 (en)2005-02-242010-02-09Ethicon Endo-Surgery, Inc.System and method for determining implanted device orientation
US8016744B2 (en)2005-02-242011-09-13Ethicon Endo-Surgery, Inc.External pressure-based gastric band adjustment system and method
US8870742B2 (en)2006-04-062014-10-28Ethicon Endo-Surgery, Inc.GUI for an implantable restriction device and a data logger
US8152710B2 (en)2006-04-062012-04-10Ethicon Endo-Surgery, Inc.Physiological parameter analysis for an implantable restriction device and a data logger
US20100300863A1 (en)*2007-05-292010-12-02Norgren GmbhPressure switch with an integrated diaphragm and switch
EP2158599B1 (en)*2007-05-292012-12-05Norgren GmbHPressure switch with an integrated diaphragm and switch
US8173918B2 (en)2007-05-292012-05-08Norgren GmbhPressure switch with an integrated diaphragm and switch
US8187163B2 (en)2007-12-102012-05-29Ethicon Endo-Surgery, Inc.Methods for implanting a gastric restriction device
US8100870B2 (en)2007-12-142012-01-24Ethicon Endo-Surgery, Inc.Adjustable height gastric restriction devices and methods
US8377079B2 (en)2007-12-272013-02-19Ethicon Endo-Surgery, Inc.Constant force mechanisms for regulating restriction devices
US8142452B2 (en)2007-12-272012-03-27Ethicon Endo-Surgery, Inc.Controlling pressure in adjustable restriction devices
US8337389B2 (en)2008-01-282012-12-25Ethicon Endo-Surgery, Inc.Methods and devices for diagnosing performance of a gastric restriction system
US8192350B2 (en)2008-01-282012-06-05Ethicon Endo-Surgery, Inc.Methods and devices for measuring impedance in a gastric restriction system
US8591395B2 (en)2008-01-282013-11-26Ethicon Endo-Surgery, Inc.Gastric restriction device data handling devices and methods
US8221439B2 (en)2008-02-072012-07-17Ethicon Endo-Surgery, Inc.Powering implantable restriction systems using kinetic motion
US7844342B2 (en)2008-02-072010-11-30Ethicon Endo-Surgery, Inc.Powering implantable restriction systems using light
US8114345B2 (en)2008-02-082012-02-14Ethicon Endo-Surgery, Inc.System and method of sterilizing an implantable medical device
US8057492B2 (en)2008-02-122011-11-15Ethicon Endo-Surgery, Inc.Automatically adjusting band system with MEMS pump
US8591532B2 (en)2008-02-122013-11-26Ethicon Endo-Sugery, Inc.Automatically adjusting band system
US8034065B2 (en)2008-02-262011-10-11Ethicon Endo-Surgery, Inc.Controlling pressure in adjustable restriction devices
US8187162B2 (en)2008-03-062012-05-29Ethicon Endo-Surgery, Inc.Reorientation port
US8233995B2 (en)2008-03-062012-07-31Ethicon Endo-Surgery, Inc.System and method of aligning an implantable antenna
US20130305832A1 (en)*2012-05-152013-11-21Chrysler Group LlcHigh pressure visual indicator
US9032805B2 (en)*2012-05-152015-05-19Fca Us LlcHigh pressure visual indicator

Also Published As

Publication numberPublication date
DE1673561A1 (en)1971-09-23
NL150590C (en)1977-01-17
GB1143153A (en)1969-02-19
FR1522015A (en)1968-04-19
NL6705869A (en)1967-11-13
BE698238A (en)1967-11-09

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