EP1048909B1 - Refrigeration dehydration filter - Google Patents
Refrigeration dehydration filter Download PDFInfo
- Publication number
- EP1048909B1 EP1048909B1 EP00301679A EP00301679A EP1048909B1 EP 1048909 B1 EP1048909 B1 EP 1048909B1 EP 00301679 A EP00301679 A EP 00301679A EP 00301679 A EP00301679 A EP 00301679A EP 1048909 B1 EP1048909 B1 EP 1048909B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- section
- tube
- filter
- external
- filter according
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
Links
- 230000018044 dehydration Effects 0.000 title claims abstract description 7
- 238000006297 dehydration reaction Methods 0.000 title claims abstract description 7
- 238000005057 refrigeration Methods 0.000 title description 7
- 239000000463 material Substances 0.000 claims abstract description 14
- 239000003507 refrigerant Substances 0.000 claims abstract description 14
- 239000002775 capsule Substances 0.000 claims description 16
- 238000004519 manufacturing process Methods 0.000 claims description 6
- 238000000034 method Methods 0.000 claims description 4
- 238000005238 degreasing Methods 0.000 claims 1
- 239000012530 fluid Substances 0.000 description 13
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 3
- 229910052782 aluminium Inorganic materials 0.000 description 3
- 239000004411 aluminium Substances 0.000 description 3
- 238000004378 air conditioning Methods 0.000 description 2
- 239000002274 desiccant Substances 0.000 description 2
- 238000001125 extrusion Methods 0.000 description 2
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 2
- 239000004952 Polyamide Substances 0.000 description 1
- 239000012535 impurity Substances 0.000 description 1
- 150000002825 nitriles Chemical class 0.000 description 1
- 239000002245 particle Substances 0.000 description 1
- 239000004033 plastic Substances 0.000 description 1
- 229920002647 polyamide Polymers 0.000 description 1
- 238000003825 pressing Methods 0.000 description 1
- 229910000679 solder Inorganic materials 0.000 description 1
- 238000005476 soldering Methods 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25B—REFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
- F25B43/00—Arrangements for separating or purifying gases or liquids; Arrangements for vaporising the residuum of liquid refrigerant, e.g. by heat
- F25B43/003—Filters
Definitions
- the present invention relates to a refrigerant dehydrating filter according to the preamble of claim 1 and to a method of manufacturing such a filter.
- refrigeration systems need a filter to separate contaminating water from refrigerant and to trap various particles and other impurities.
- Dehydrating filters are known and are designed primarily to remove water from the refrigerant.
- the term "refrigeration system” includes air conditioning systems and heat pumps etc and the term “refrigerant' should be understood to extend to fluids used in all these types of equipment.
- Compact filters are also known in which an inlet hole into the filter and an outlet hole from the filter are found on a common base in order to present a compact design and to suit preferred applications.
- filters are known in which the inlet and outlet holes are arranged in different orientations due to their specific intended application.
- European Patent Application No. 0 915 308 discloses such a filter, in which the refrigerant flows from an inlet up through desiccating material before the flow is reversed to send it down a tube to an outlet coaxial with the inlet that ends beyond the inlet.
- the filter is screwed into a base connected to a condenser unit the inlet and outlet make connections with pipes defined in the base.
- European patent application 0 838 642 discloses a removable reservoir connected to a header of a condenser for a refrigeration circuit through which refrigeration fluid is passed.
- the reservoir is produced in the form of a replaceable cartridge provided with a connection able to cooperate with a base of conjugate shape which is fixed to the header and connected to the latter by an inlet manifold and an outlet manifold for the refrigeration fluid.
- Swiss Patent No. 342,589 discloses a dehydrating filter characterised by a cylindrical reservoir, a fitting detachably installed in the top part of the reservoir and provided with inlet and outlet ports, an adapter secured in the fitting, two strainers each arranged at a distance from the top and bottom ends of the reservoir, a desiccating agent located between the two strainers, the strainers being provided with coaxial bores, and a vertical tube extending through said bores, the lower end of the tube terminating in the base of the reservoir while the upper end of the tube extends into the adapter and is tightly connected thereto.
- the adapter has an opening connecting a line for refrigeration fluid to the inside of the vertical tube via an inlet in the fitting, and the fitting having an outlet connected to a further line for the fluid, the whole assembly being so arranged that the fluid is able to flow through the inlet in the fitting, the opening in the adapter and down through the vertical tube, then up through the desiccating agent and finally out through the outlet in the fitting.
- European patent application 0 915 307 discloses a fluid tank for an air conditioning condenser.
- the tank is screwed axially into a connecting base which is in turn brazed to a header box of the condenser. It contains an interchangeable axial cartridge and communicates with the header box through ducts provided in the connecting base.
- a refrigerant dehydration filter comprising an external tube sealed at one end to define a return cavity; an internal tube coaxial with said external tube; a first external connection to said external tube and a second external connection to said internal tube to facilitate a transfer of refrigerant between said tubes, wherein said external tube contains desiccating material, characterised in that: said filter further comprises a filter capsule containing said desiccating material, said filter capsule being fitted within said external tube and having a coaxial tubular section through which said internal tube passes.
- a method for manufacturing a filter of this type is provided.
- a dehydrating filter embodying the present invention is illustrated in Figure 1 .
- the filter has a hollow external casing 11 , 12 of a cylindrical shape, in two interconnecting sections.
- the first of said sections 11 is substantially cup-shaped and is formed from an aluminium extrusion with a relatively thick base portion 13 .
- Section 11 acts as a cover for a second section 12 , constituting a major portion of the device.
- the second section 12 also has a cylindrical body, open at one end and designed to couple up with the first section 11 by means of soldered joint 14 .
- the other end of the second section 12 is restricted by a pair of coaxial sleeve sections 15 , 16 that terminate in a hole 17.
- the second section 12 houses a filter capsule within its cylindrical volume.
- This capsule comprises a cup section 18 of cylindrical shape with an external diameter that can fit within the internal diameter of the section of the hollow external casing 12 .
- the cup 18 has a coaxial tubular section 19 through which a tubular insert 20 passes.
- a free annular space is provided between the external surface of the coaxial tubular section 19 and the internal surface of the cup section 18 .
- This annular space is filled with a desiccating material 21 located between two annular felt discs, in the form of a cylindrical sandwich but having a hole down its middle.
- On the other side of the felt washers there is provided at one end a drilled stopper 23 , turned towards the centre of the casing, while at the other end is the drilled base 24 of the cup section 18 .
- the tubular insert 20 passes into the coaxial tubular section 19 of the cup 18 starting off as a plain tubular section and then becoming a toothed or splined section 25 that extends towards the second sleeve 16 of the second part 12 of the casing, passing into it.
- the outward facing spline end 25 on the tubular insert 20 has an expanded section 26 which abuts the end of the sleeve section 16 preventing the tubular insert 20 from dropping inside the second part of the casing.
- the end of the tubular insert 20 has an enlarged diameter 27 onto which a gasket 28 is positioned.
- the gasket 28 prevents the input fluid from mixing with the output fluid from the filter when it is positioned within the base 29 of a condenser in line with a fluid input channel 30 and fluid output channel 31 , as shown in Figure 2 .
- a seal is also ensured due to the provision of two O-ring seals 32 mounted beyond the sleeve section 16 .
- the end of the tubular insert 20 facing the inside of the casing has a locating ring or similar 33 that keeps the capsule in position with respect to the tubular insert 20 .
- the filter has input channels between the internal surfaces of the sleeve section 16 and the splines 25 on the tubular insert 20 . These channels lead into sleeves 15 before passing through the drilled base 24 of the bucket section 18 . Subsequently, the input fluid is admitted into the first felt washer 22 , passing through the desiccating material 21 before reaching the second felt washer 22 followed by the drilled stopper 23 and escapes into the casing 11 , 12 . The fluid moves unimpeded into the open free end of the tubular insert 20 and passing through it escapes at the other coaxial end through the seal 27 . It can be seen that the input and output channels are coaxial and therefore the filter is particularly compact and straightforward.
- Locating ring 33 enables the very rapid assembly of the components of the filter.
- the casing 11 , 12 is formed in aluminium, while tubular insert 20 is fabricated in a plastic material, such as polyamide and is relatively straightforward to manufacture,
- the gasket is in hydrogenated nitrile to create a seal.
- the external cylindrical casing is obtained by extrusion with a similar process being used to produce a second section 12 that completes the casing for the filter.
- the felt washer 22 is inserted into the cup section 18 up against the drilled base 24 .
- the annular space is then filled with the desiccating material 21 and the second felt washer 22 is positioned in the cup section 18 to contain the desiccating material.
- the drilled stopper 23 is put in place by pressing it into the cup section 18 . The capsule is therefore ready to be assembled into the complete filter.
- the second section of the extruded cylindrical casing forms sleeve sections 15 , 16 in an extruded body in aluminium. External threading of this sleeve section 18 is then carried out thereby allowing the filter to be positioned into the hole 29 .
- tubular insert 20 is located into hole 17 of the second section 12 of the casing until the widened part 26 of the splines 25 is up against the end of the sleeve section 16 which prevents the tubular insert from entering the second section 12 of the casing.
- the constructed capsule is inserted into the tubular insert 20 and held in place with locating ring 33 .
- the casing is then assembled by soldering the two sections once they have been brought together at 14 . This is done by fitting the two sections 11 , 12 together and creating an annular solder joint.
- the two O-ring seals are fitted on the external surface of the sleeve section 16 .
- a ring type gasket 28 is fitted on the large diameter end section 27 of the tubular insert 20 .
Landscapes
- Engineering & Computer Science (AREA)
- Thermal Sciences (AREA)
- Power Engineering (AREA)
- Physics & Mathematics (AREA)
- Mechanical Engineering (AREA)
- Chemical & Material Sciences (AREA)
- General Engineering & Computer Science (AREA)
- Analytical Chemistry (AREA)
- Filtering Of Dispersed Particles In Gases (AREA)
- Separation Using Semi-Permeable Membranes (AREA)
- Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)
- Vaporization, Distillation, Condensation, Sublimation, And Cold Traps (AREA)
- Separation By Low-Temperature Treatments (AREA)
- Filtration Of Liquid (AREA)
- Centrifugal Separators (AREA)
Abstract
Description
- The present invention relates to a refrigerant dehydrating filter according to the preamble of claim 1 and to a method of manufacturing such a filter.
- It is well known that refrigeration systems need a filter to separate contaminating water from refrigerant and to trap various particles and other impurities. Dehydrating filters are known and are designed primarily to remove water from the refrigerant. As used herein, the term "refrigeration system" includes air conditioning systems and heat pumps etc and the term "refrigerant' should be understood to extend to fluids used in all these types of equipment.
- Compact filters are also known in which an inlet hole into the filter and an outlet hole from the filter are found on a common base in order to present a compact design and to suit preferred applications. Alternatively, filters are known in which the inlet and outlet holes are arranged in different orientations due to their specific intended application.
- European Patent Application No. 0 915 308 discloses such a filter, in which the refrigerant flows from an inlet up through desiccating material before the flow is reversed to send it down a tube to an outlet coaxial with the inlet that ends beyond the inlet. When the filter is screwed into a base connected to a condenser unit the inlet and outlet make connections with pipes defined in the base.
- This design, and others in which the inlet and outlet are arranged in a different manner due to their specific type of application, make the filter easy to fit. However, this type of filter is structurally complex with a number of components, which must all be located correctly during the assembly process. This leads to assembly problems such that a filter can take a long time to construct. Additionally the various components may not be located securely, which can cause faulty seals.
- European patent application 0 838 642 discloses a removable reservoir connected to a header of a condenser for a refrigeration circuit through which refrigeration fluid is passed. The reservoir is produced in the form of a replaceable cartridge provided with a connection able to cooperate with a base of conjugate shape which is fixed to the header and connected to the latter by an inlet manifold and an outlet manifold for the refrigeration fluid.
- Swiss Patent No. 342,589 discloses a dehydrating filter characterised by a cylindrical reservoir, a fitting detachably installed in the top part of the reservoir and provided with inlet and outlet ports, an adapter secured in the fitting, two strainers each arranged at a distance from the top and bottom ends of the reservoir, a desiccating agent located between the two strainers, the strainers being provided with coaxial bores, and a vertical tube extending through said bores, the lower end of the tube terminating in the base of the reservoir while the upper end of the tube extends into the adapter and is tightly connected thereto. The adapter has an opening connecting a line for refrigeration fluid to the inside of the vertical tube via an inlet in the fitting, and the fitting having an outlet connected to a further line for the fluid, the whole assembly being so arranged that the fluid is able to flow through the inlet in the fitting, the opening in the adapter and down through the vertical tube, then up through the desiccating agent and finally out through the outlet in the fitting.
- European patent application 0 915 307 discloses a fluid tank for an air conditioning condenser. The tank is screwed axially into a connecting base which is in turn brazed to a header box of the condenser. It contains an interchangeable axial cartridge and communicates with the header box through ducts provided in the connecting base.
- According to an aspect of the present invention there is provided a refrigerant dehydration filter, comprising an external tube sealed at one end to define a return cavity; an internal tube coaxial with said external tube; a first external connection to said external tube and a second external connection to said internal tube to facilitate a transfer of refrigerant between said tubes, wherein said external tube contains desiccating material, characterised in that: said filter further comprises a filter capsule containing said desiccating material, said filter capsule being fitted within said external tube and having a coaxial tubular section through which said internal tube passes. According to another aspect of the present invention, a method for manufacturing a filter of this type is provided.
- The present invention will now be described by way of example only, with reference to the accompanying drawings, of which:
- Figure 1 is a longitudinal side elevation of a dehydrating filter embodying the present invention;
- Figure 2 is an enlarged sectional view of part of the filter shown in Figure 1; and
- Figure 3 is a transverse section of a portion of the filter shown in Figure 2.
-
- A dehydrating filter embodying the present invention is illustrated in Figure 1. The filter has a hollow
11, 12 of a cylindrical shape, in two interconnecting sections. The first of saidexternal casing sections 11 is substantially cup-shaped and is formed from an aluminium extrusion with a relativelythick base portion 13.Section 11 acts as a cover for asecond section 12, constituting a major portion of the device. - The
second section 12 also has a cylindrical body, open at one end and designed to couple up with thefirst section 11 by means of solderedjoint 14. The other end of thesecond section 12 is restricted by a pair of 15, 16 that terminate in acoaxial sleeve sections hole 17. Thesecond section 12 houses a filter capsule within its cylindrical volume. This capsule comprises acup section 18 of cylindrical shape with an external diameter that can fit within the internal diameter of the section of the hollowexternal casing 12. Thecup 18 has a coaxialtubular section 19 through which atubular insert 20 passes. - A free annular space is provided between the external surface of the coaxial
tubular section 19 and the internal surface of thecup section 18. This annular space is filled with a desiccatingmaterial 21 located between two annular felt discs, in the form of a cylindrical sandwich but having a hole down its middle. On the other side of the felt washers there is provided at one end adrilled stopper 23, turned towards the centre of the casing, while at the other end is thedrilled base 24 of thecup section 18. - The
tubular insert 20 passes into the coaxialtubular section 19 of thecup 18 starting off as a plain tubular section and then becoming a toothed or splinedsection 25 that extends towards thesecond sleeve 16 of thesecond part 12 of the casing, passing into it. The outward facingspline end 25 on thetubular insert 20 has an expandedsection 26 which abuts the end of thesleeve section 16 preventing thetubular insert 20 from dropping inside the second part of the casing. The end of thetubular insert 20 has an enlargeddiameter 27 onto which agasket 28 is positioned. Thegasket 28 prevents the input fluid from mixing with the output fluid from the filter when it is positioned within thebase 29 of a condenser in line with afluid input channel 30 andfluid output channel 31, as shown in Figure 2. A seal is also ensured due to the provision of two O-ring seals 32 mounted beyond thesleeve section 16. - The end of the
tubular insert 20 facing the inside of the casing has a locating ring or similar 33 that keeps the capsule in position with respect to thetubular insert 20. The filter has input channels between the internal surfaces of thesleeve section 16 and thesplines 25 on thetubular insert 20. These channels lead intosleeves 15 before passing through the drilledbase 24 of thebucket section 18. Subsequently, the input fluid is admitted into thefirst felt washer 22, passing through thedesiccating material 21 before reaching thesecond felt washer 22 followed by thedrilled stopper 23 and escapes into the 11, 12. The fluid moves unimpeded into the open free end of thecasing tubular insert 20 and passing through it escapes at the other coaxial end through theseal 27. It can be seen that the input and output channels are coaxial and therefore the filter is particularly compact and straightforward. - Locating
ring 33 enables the very rapid assembly of the components of the filter. For example, the 11, 12 is formed in aluminium, whilecasing tubular insert 20 is fabricated in a plastic material, such as polyamide and is relatively straightforward to manufacture, The gasket is in hydrogenated nitrile to create a seal. - During manufacture, the external cylindrical casing is obtained by extrusion with a similar process being used to produce a
second section 12 that completes the casing for the filter. Next, thefelt washer 22 is inserted into thecup section 18 up against the drilledbase 24. The annular space is then filled with the desiccatingmaterial 21 and thesecond felt washer 22 is positioned in thecup section 18 to contain the desiccating material. Finally, thedrilled stopper 23 is put in place by pressing it into thecup section 18. The capsule is therefore ready to be assembled into the complete filter. - The second section of the extruded cylindrical casing forms
15, 16 in an extruded body in aluminium. External threading of thissleeve sections sleeve section 18 is then carried out thereby allowing the filter to be positioned into thehole 29. - This is then followed by a greasing stage then the
tubular insert 20 is located intohole 17 of thesecond section 12 of the casing until the widenedpart 26 of thesplines 25 is up against the end of thesleeve section 16 which prevents the tubular insert from entering thesecond section 12 of the casing. - The constructed capsule is inserted into the
tubular insert 20 and held in place with locatingring 33. The casing is then assembled by soldering the two sections once they have been brought together at 14. This is done by fitting the two 11, 12 together and creating an annular solder joint.sections - The two O-ring seals are fitted on the external surface of the
sleeve section 16. Aring type gasket 28 is fitted on the largediameter end section 27 of thetubular insert 20. Once the assembly is completed, an air-tightness test is performed to ensure that performance can be guaranteed in use.
Claims (13)
- A refrigerant dehydration filter, comprising
an external tube (11,12) sealed at one end to define a return cavity;
an internal tube (20) coaxial with said external tube;
a first external connection (30) to said external tube and a second external connection (31) to said internal tube to facilitate a transfer of refrigerant between said tubes, wherein said external tube contains desiccating material (21),
characterised in that:said filter further comprises a filter capsule (18,19,22,23) containing said desiccating material, said filter capsule being fitted within said external tube (11,12) and having a coaxial tubular section (19) through which said internal tube (20) passes. - A refrigerant dehydration filter according to claim 1, wherein said external tube comprises:a first interconnecting section (11) which is substantially cup-shaped; anda second interconnecting section (12) which connects to the first interconnecting section at one end and which houses said filter capsule.
- A filter according to claim 1 or claim 2, wherein said external tube provides a substantially larger cross sectional area compared to the cross sectional area of said internal tube.
- A filter according to any of claims 1 to 3, wherein an input flow is directed to said external tube (11,12) and the return flow is received from said internal tube (20).
- A filter according to claim 1, wherein said tubes (20, 11,12) have a cylindrical cross-section.
- A filter according to any of claims 1 to 5, wherein said internal tube (20) consists of a tubular insert having an externally splined area.
- A filter according to claim 6, in which the external tube (11,12) is restricted at its open end by a sleeve section (16) and an outward facing splined end (25) of said tubular insert (20) has a widened end (26) that abuts the end of said sleeve section.
- A filter according to any of claims 1 to 7, wherein said internal tube (20) consists of a tubular insert terminated with an enlarged diameter end (27) on which a gasket (28) is positioned.
- A filter according to any of claims 1 to 8, with termination fittings of a tubular insert (20) of a casing section (12) comprising at one end a locating ring (33) positioned between said tubular insert and said capsule (18, 19, 23), with the other end (26) widened to abut the end of the sleeve section (16).
- A filter according to any of claims 1 to 9, arranged as a sandwich within a cup section (18) with a drilled bottom end (24) assembled in sequence with an initial felt washer (22), said desiccating material (21), a second felt washer (22) and a drilled stopper (23).
- A filter according to any of claims 1 to 10, having securing means (33) to hold the capsule (18, 19, 23) in position relative to the internal tube (20).
- A method of manufacturing a refrigerant dehydration filter according to any of claims 1 to 10, by performing the steps of:obtaining a hollow external casing (11, 12) and the component parts of said filter;producing a second section (12) of this extruded casing creating sleeve sections (15, 16) with external threading to one of the sleeve sections;performing a degreasing stage;fitting a tubular insert (20) into a hole (17) in the second section (16) of said casing (11, 12) until the widened part (26) of splines (25) of the tubular insert abuts up against the end of the sleeve section (16);fitting a capsule (18, 19, 22, 23) into said tubular insert (20); andfitting a locating ring (33) of the capsule on to the tubular insert.
- A method of manufacturing a refrigerant dehydration filter according to claim 12, wherein said method further comprises the steps of:obtaining a capsule (18, 19, 22, 23) having cylindrical cup section (18) and a coaxial tubular section (19); andfilling the capsule with the desiccating material and locating a stopper (23) into the cup section.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| IT1999MI000874A ITMI990874A1 (en) | 1999-04-26 | 1999-04-26 | QUICK ASSEMBLY DEHYDRATOR FILTER AND ITS ASSEMBLY PROCEDURE |
| ITMI990874 | 1999-04-26 |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP1048909A2 EP1048909A2 (en) | 2000-11-02 |
| EP1048909A3 EP1048909A3 (en) | 2001-02-07 |
| EP1048909B1 true EP1048909B1 (en) | 2005-01-19 |
Family
ID=11382812
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP00301679A Expired - Lifetime EP1048909B1 (en) | 1999-04-26 | 2000-03-01 | Refrigeration dehydration filter |
Country Status (5)
| Country | Link |
|---|---|
| EP (1) | EP1048909B1 (en) |
| AT (1) | ATE287516T1 (en) |
| DE (1) | DE60017495T2 (en) |
| ES (1) | ES2235776T3 (en) |
| IT (1) | ITMI990874A1 (en) |
Families Citing this family (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102005033168B4 (en) | 2005-07-13 | 2009-04-16 | Jahn Gmbh Umform- Und Zerspanungstechnik | Dryer for a cooling medium in a cooling medium circuit, in particular for an air conditioning system of a vehicle |
| CN120209905B (en) * | 2025-05-21 | 2026-02-06 | 洪湖市蓝天安环节能设备有限公司 | A filtration device for natural gas transportation |
Family Cites Families (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CH342589A (en) * | 1956-04-16 | 1959-11-30 | Ansul Chemical Co | dryer |
| FR2754887B1 (en) * | 1996-10-23 | 1998-12-31 | Valeo Thermique Moteur Sa | CONDENSER WITH REMOVABLE TANK FOR REFRIGERATION CIRCUIT, IN PARTICULAR OF MOTOR VEHICLE |
| FR2770629B1 (en) * | 1997-11-05 | 2000-02-11 | Valeo Thermique Moteur Sa | AIR CONDITIONING CONDENSER PROVIDED WITH AN INTERCHANGEABLE FLUID TANK |
| FR2770896B1 (en) * | 1997-11-10 | 2000-01-28 | Valeo Thermique Moteur Sa | AIR CONDITIONING CONDENSER PROVIDED WITH A FLUID TANK WITH INTERCHANGEABLE CARTRIDGE |
-
1999
- 1999-04-26 IT IT1999MI000874A patent/ITMI990874A1/en unknown
-
2000
- 2000-03-01 ES ES00301679T patent/ES2235776T3/en not_active Expired - Lifetime
- 2000-03-01 DE DE60017495T patent/DE60017495T2/en not_active Expired - Fee Related
- 2000-03-01 EP EP00301679A patent/EP1048909B1/en not_active Expired - Lifetime
- 2000-03-01 AT AT00301679T patent/ATE287516T1/en not_active IP Right Cessation
Also Published As
| Publication number | Publication date |
|---|---|
| DE60017495D1 (en) | 2005-02-24 |
| DE60017495T2 (en) | 2006-03-23 |
| EP1048909A2 (en) | 2000-11-02 |
| ATE287516T1 (en) | 2005-02-15 |
| EP1048909A3 (en) | 2001-02-07 |
| ES2235776T3 (en) | 2005-07-16 |
| ITMI990874A1 (en) | 2000-10-26 |
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