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Frame And Refrigerating Apparatus

Abstract: The invention involves a frame and a refrigerating apparatus that uses the frame the frame is composed by at least one frame component wherein a VIP material is placed inside of the at least one frame component. The frame is capable of preventing the accumulation of water condensation along the frame has both a better heat insulation effect and an energy saving effect.

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Notices, Deadlines & Correspondence

Patent Information

Application #
Filing Date
02 February 2015
Publication Number
24/2015
Publication Type
INA
Invention Field
MECHANICAL ENGINEERING
Status
Email
Parent Application
Patent Number
Legal Status
Grant Date
2023-03-07
Renewal Date

Applicants

CARRIER CORPORATION
One Carrier Place P.O. Box 4015 Farmington CT 06034 4015

Inventors

1. SHEN Nathan (Jiarun)
No. 3239 Shenjiang Road Pudong Shanghai

Specification

FRAME AND REFRIGERATING APPARATUS
FIELD OF THE INVENTION
[0001] The invention involves a frame and a refrigerating apparatus that uses this frame.
In particular, the invention is applicable to a refrigerating apparatus used for the
refrigerating of food products (e.g. in supermarkets) and a corresponding frame.
BACKGROUND
[0002] A refrigerating apparatus structure in the prior art may generally comprise a main
body, side panels, a frame and a door body; the side panels are installed on the two side
ends of the main body, the frame is installed on the side of the main body that aligns with
the outer edges of the door body, and the door body is installed in a manner directly facing
towards the frame. A sealing strip is placed between the door body and the frame; the
sealing strip may be placed upon the outer edges of the door body or upon the frame of the
refrigerating apparatus.
[0003] Chinese Patent Application No. CN20092021 18863.0 discloses an energy-saving
refrigerator. The energy-saving refrigerator comprises a cabinet body, a foam interlayer
filled inside the cabinet body and an insulation panel placed in the foam interlayer that is
fixed in place with a supporting bracket; included among these, the insulation panel may
be a vacuum insulation panel (hereon referred in short as VIP). However, since the VIP
comprises a core and a coating layer surrounding the core, the direct placement of the VIP
in the foam interlayer may cause the coating layer to break, the core of the VIP will absorb
water resulting from this breakage. This damage to the VIP will greatly reduce the
insulation effect of a refrigerator body's frame. Moreover, given that VIPs are widely used
in the walls of energy-saving refrigerators, VIPs in walls of energy-saving refrigerators
should be used to the greatest possible extent in efforts to reduce absorption of heat.
[0004] However, within the general structure in currently existing refrigerators, there
exists a technical problem within the alignment on the front side of refrigerator of the
refrigerator frame with the outside edges of the refrigerator's door body. In order to
retrieve food from the inside of the refrigerator, the door body of refrigerator must be
frequently opened; as a result, when warmer outside air encounters the cooler surface of
refrigerator's frame, it rapidly cools down; this in turn forms water condensation. This
condensation of water surmounts to great difficulty faced in the service and maintenance of
a refrigerator.
[0005] For this reason, in currently existing refrigerator structures, the frame is installed
with an electrical heating function that conducts heat by means of the available power
supply. This electrical heating function is used to prevent evaporated water from
condensing water along the frame. It is evident that the electrical energy consumed by this
electrical heating function assumes a considerable portion of the total electrical energy
consumed by the refrigerating apparatus. Furthermore, this electrical heating function is
easily damaged and results in maintenance difficulty.
SUMMARY OF THE INVENTION
[0006] In resolving the technical problem, the invention provides a frame that prevents
the formation of water condensation, and that simultaneously also has an advantageous
energy-saving effect.
[0007] Furthermore, in resolving the technical problem, the invention provides a frame
with vacuum insulation panel material placed inside of it that is easy to replace in the event
of undergoing damage.
[0008] Furthermore, in resolving the technical problem, the invention provides a
refrigerating apparatus with optimal ability in storing food products. Such an optimal
refrigerating apparatus is to be installed with the aforementioned frame.
[0009] The invention will resolve the aforementioned technical problem and other
possible technical problems by means of the following technical, planned solutions:
[0010] The invention's first aspect provides a frame used for a refrigerating apparatus,
the frame is composed by at least one frame component, wherein a VIP material is placed
inside of the at least one frame component.
[0011] Optionally, for the aforementioned frame, the VIP material is placed inside of the
at least one frame component and adjacent the component's front surface.
[0012] Optionally, for the aforementioned frame, the at least one component comprises a
component-body part and a component-cover part that is attached to the component-body
part, the component-body part and the component-cover part together form a chamber for
holding the VIP material.
[0013] Optionally, for the aforementioned frame, the component-body part and the
component-cover part are attached together in a detachable manner.
[0014] Optionally, for the aforementioned frame, a foam heat-insulation material is
further placed inside the at least one component.
[0015] Optionally, for the aforementioned frame, the foam heat-insulation material is
placed inside of the at least one component and adjacent to the component's rear surface.
[0016] Optionally, for the aforementioned frame, the frame is formed as an opening to
the refrigerating apparatus that is used for retrieving and placing items to be refrigerated.
[0017] The invention's second aspect provides a frame for refrigerating apparatus, the
frame comprises an upper component, a lower component, a left component and a right
component, among which, the upper component and the lower component are attached to
the left component and the right component respectively so as to form a rectangular frame,
wherein, at least one of the upper component, the lower component, the left component
and the right component has a VIP material placed inside.
[0018] Optionally, for the aforementioned frame, the VIP material is placed inside of the
at least one frame component and adjacent to the component's front surface.
[0019] Optionally, for the aforementioned frame, the at least one component comprises a
component-body part and a component-cover part attached to the component-body part,
the component-body part and the component-cover part together form a chamber for
holding the VIP material
[0020] Optionally, for the aforementioned frame, the component-body part and the
component-cover part are attached together in a detachable manner.
[0021] Optionally, for the aforementioned frame, a foam heat-insulation material is
further placed inside the at least one component.
[0022] Optionally, for the aforementioned frame, the foam heat-insulation material is
placed inside of the at least one component and adjacent to the component's rear surface.
[0023] Optionally, for the aforementioned frame, the upper component, the lower
component, the left component and the right component each comprises a component-body
part and a component-cover part attached to the component-body part, the
component-body part and the component-cover part together form a chamber for holding
the VIP material.
[0024] Optionally, for the aforementioned frame, the component-body part and the
component-cover part are attached together in a detachable manner.
[0025] Optionally, for the aforementioned frame, the foam heat-insulation material is
further placed inside of the upper component, the lower component, the left component
and the right component.
[0026] Optionally, for the aforementioned frame, the foam heat-insulation material is
placed inside of the upper component, the lower component, the left component and the
right component respectively and adjacent to the each component rear surface.
[0027] Optionally, for the aforementioned frame, the upper component, the lower
component, the left component and the right component have the same structure.
[0028] Optionally, for the aforementioned frame, the upper component, the lower
component, the left component and the right component are attached in a detachable
manner by multiple attaching components in order to form the frame.
[0029] Optionally, for the aforementioned frame, the frame further comprises at least one
intermediate component attached to the upper component and the lower component
respectively or attached to the left component and the right component respectively.
[0030] Optionally, for the aforementioned frame, the at least one intermediate
component is attached to the upper component and the lower component or attached to the
left component and the right component in a detachable manner.
[0031] Optionally, for the aforementioned frame, a VIP material is placed inside of the at
least one intermediate component.
[0032] Optionally, for the aforementioned frame, the VIP material is placed inside of the
at least intermediate component and adjacent to component's front surface.
[0033] Optionally, for the aforementioned frame, the at least one intermediate
component has the same structure as the upper component, the lower component, the left
component and the right component.
[0034] Optionally, for the aforementioned frame, the frame forms an opening to the
refrigerating apparatus that is used for retrieving and placing items to be refrigerated.
[0035] The invention's third aspect provides a frame for refrigerating apparatus, the
frame comprises an upper component, a lower component, a left component, a right
component and at least one intermediate component, the upper component and the lower
component are attached to the left component and the right component respectively, the at
least one intermediate component is attached to the upper component and the lower
component respectively or attached to the left component and the right component
respectively, wherein, at least one of the upper component, the lower component, the left
component, right component and the at least one intermediate component has a VIP
material placed inside.
[0036] Optionally, for the aforementioned frame, the frame forms an opening to the
refrigerating apparatus that is used for retrieving and placing items to be refrigerated.
[0037] The invention's fourth aspect provides a refrigerating apparatus that used a frame
of the preceding aspects.
[0038] Optionally, for the aforementioned refrigerating apparatus, the refrigerating
apparatus comprises a main body and a door body, among which the frame is installed on
the front side of the main body, and the door body is installed on the main body and can be
rotated between an open position for opening the refrigerating apparatus and a closed
position for closing the refrigerating apparatus in a manner that allows the door body to
pivot back and forth.
[0039] The VIP material or vacuum insulation panel material according to the claims
comprises a core and a coating layer surrounding the core. Particularly, the VIP material or
vacuum insulation panel material according to the claims is a kind of vacuum heat
preservation material that is formed by packaging glass wool core material characterized
by extremely strong insulation characteristics together in a vacuum state with high barrier
packaging material. The result exhibits excellent insulation characteristics. The VIP
material can effectively avoid heat transfer caused by air convection, and the heat transfer
coefficient can therefore be considerably reduced; moreover, the VIP material does not
contain any ozone depleting material and has the characteristics of being environmentally
protective, efficient and energy saving. Therefore, by means of installing VIP material
inside of the at least one frame components, specifically near the front surface of the at
least one component, the component will have well-defined heat insulation capability that
has the following effect: under the condition that there is frequent opening and closing of
the door body, when exterior warmer air makes contact with the front surface of the at least
one frame component, condensed water will not be formed on the frame's front surface.
[0040] It is evident that that any reasonable combination of the above-described
technical solutions also falls within the scope of protection for the invention.
BRIEF DESCRIPTION OF THE DRAWINGS
[0041] With reference to the accompanying drawings, the content of the invention's
disclosure will become more easily understood. It is appreciated by those skilled in this
technical domain that the accompanying drawings serve as examples only and are not
intended to limit the scope of protection of the invention. In the drawings:
[0042] Fig. 1 shows a schematic structural view of a refrigerating apparatus that accords
with the invention;
[0043] Fig. 2 shows a schematic structural view of a frame of the refrigerating apparatus
of Fig. 1;
[0044] Fig. 3 shows a schematic structural view of a frame of a different refrigerating
apparatus;
[0045] Fig. 4 shows a schematic sectional view of the frame components; and
[0046] Fig. 5 shows a schematic structural view of the connecting of the frame
components shown in Figs. 1-3.
DETAILED DESCRIPTION OF THE INVENTION
[0047] Figs. 1 to 5 and the following discussion disclose details about a particular
implementation of the invention so as to teach those skilled in the technical domain how to
produce the invention and use it in its best capacity. In order to present an overview of the
invention, several conventional aspects have been simplified or omitted. Those skilled in
the technical domain should understand that all variations originating from these particular
examples also fall within the scope of the invention. Those skilled in the technical domain
should understand that the features described below can be arranged in various ways so as
to form numerous variations of the invention. Therefore, the invention is not limited to the
following particular embodied designs, and furthermore, is only to be defined under the
provisions of the appended claims and their equivalents.
[0048] Fig. 1 shows a schematic structural view of a refrigerating apparatus according to
a particular implementation of the invention. As can be seen, the refrigerating apparatus
comprises a main body 1, side panels 2, a frame 3 and a door body 5; it can be seen that in
the refrigerating apparatus, the main body 1, side panels 2, frame 3 and door body 5
enclose a refrigerating chamber used for accommodating items to be refrigerated.
Specifically, the side panels 2 are installed on both sides of the main body, the frame 3 is
installed on the front side of the main body 1 that aligns opposite with outside edges of the
door body and where the frame 3 forms the opening of the refrigerating apparatus used for
retrieving and placing items. The door body 5 is installed on the main body 1 and can be
rotated about the main body 1 in a manner that it can pivot back and forth so as to allow
one to place food items into the refrigerating apparatus or retrieve such items out of the
refrigerating apparatus; that is, the door body 5 can be rotated between an open position
that allows the main body to be opened and a closed position that allows the main body to
be closed.
[0049] Fig. 2 further shows a schematic structural view of the frame 3 design depicted in
the refrigerating apparatus designs in Fig. 1. While the frame of the refrigerating apparatus
in the designs shown in Figs. 1 and 2 has a square-shaped structure, it should be
understood that the refrigerating apparatus outlined for invention can also have other
different structures and is not limited to the square-shaped structure design shown in Fig. 1
of the invention. For example, in some structural designs, the frame of the refrigerating
apparatus of the invention can also be designed to be of substantially circular, oval shape
(among other shapes it may be designed to be as well). In other alternative
implementations, a sealing strip is placed between the frame 3 and the door body 5. This
sealing strip can be placed on the door body 5 (as shown in Fig. 4) and can also be placed
on the frame 3.
[0050] As shown in Fig. 2, the frame 3 design comprises an upper component 3a, a
lower component 3b, a left component 3c and a right component 3d, among which the
upper component, the lower component, the left component and the right component are
attached to form the rectangular frame. In a preferred scheme, the upper component 3a, the
lower component 3b, the left component 3c and the right component 3d are attached
together by means of the multiple attaching component parts 6 in a detachable manner to
form a frame 3; this allows that the frame 3 can be easily disassembled when it is required
that maintenance work be performed on the frame 3. As shown in Figs. 1 to 3 and Fig. 5,
the attaching components (e.g., in the form of angle iron blocks having mounting holes)
are respectively attached to corresponding components by means of multiple screws. As
described above, if the refrigerating apparatus is possibly assembled in circular or oval
shape, the frame 3 is also thus accordingly of a circular or oval shape. In this event, the
frame 3 can also be formed by one circular or oval shaped component, and it is also
possible for two or more components to be attached together in the form of a circular or
oval shape. Under this circumstance, the attaching components used in the attachment of
two or more components can be of a corresponding suitable structural shape that can be
pictured and designed by those skilled in this technical domain and, thus, will not
discussed in detail.
[0051] Fig. 3, in a further step, shows the structure of the frame 3 that corresponds to the
refrigerating apparatus in another particular implementation of the invention. The
refrigerating apparatus depicted in this particular example displays the use of multiple door
bodies so that the refrigerating space of the refrigerating apparatus is divided into
multiple different compartment spaces (e.g., refrigerating chambers). In this structure, in
addition to the upper component 3a, the lower component 3b, the left component 3c and
the right component 3d, the frame 3 also comprises at least one intermediate component 3e
attached to the upper component 3a and the lower component 3b. Preferably, the at least
one intermediate component 3e may also be attached to the above-described upper and
lower components by means of attaching component 6 parts. It should be understood that
in alternate design structures, the at least one intermediate component 3e can also be
attached to the left component 3c and the right component 3d rather than the upper
component 3a and the lower component 3b.
[0052] Fig. 4 shows a schematic structural view of the components of the frame 3. When
the refrigerating chamber of the refrigerating apparatus is closed, the door body of the
refrigerating apparatus is compressed against the front surface of the components of frame
3. It is recommended that the intermediate component shown in Fig. 4 should be used as
the intermediate component 3e of Fig. 3, and the corresponding components of two door
bodies 5 compress against both sides of the front surface of the intermediate component 3e
respectively. It should be understood that in the particular example depicted in Fig. 1, as a
separate example, the upper component, the lower component, the left component and the
right component (e.g., outside edges of the door body) of a single door body can compress
against the upper component 3a, the lower component 3b, the left component 3c and the
right component 3d of the frame respectively.
[0053] As shown in Fig. 4, the at least one component of the frame 3 has a VIP material
4 1 placed inside. Preferably, the VIP material 4 1 is placed so that it is adjacent to the front
surface of the at least one other component from inside the at least one component it is
installed in. The VIP material is a kind of vacuum heat preservation material that is formed
by packaging glass wool core material characterized by extremely strong insulation
characteristics together in a vacuum state with high barrier packaging material. The result
exhibits excellent insulation characteristics. The VIP material can effectively avoid heat
transfer caused by air convection, and the heat transfer coefficient can therefore be
considerably reduced; moreover, the VIP material does not contain any ozone depleting
material and has the characteristics of being environmentally protective, efficient and
energy saving. Therefore, by means of installing VIP material 4 1 inside of the at least one
frame 3 components, specifically near the front surface of the at least one component, the
component will have well-defined heat insulation capability that has the following effect:
under the condition that there is frequent opening and closing of the door body, when
exterior warmer air makes contact with the front surface of the at least one frame
component, condensed water will not be formed on the frame's front surface.
[0054] It should be understood that in the most preferable particular implementation of
the invention, all the components of the frame 3 should be produced with VIP material
inside. Furthermore, it is most preferable that VIP material placed inside of each
component be adjacent to the component's front surface.
[0055] In further reference to Fig. 4, the at least one design structure composes a
component-body part 30 and a component-cover part 3 attached to the body component
30 such that a chamber to hold the VIP material is formed inside the at least one
component. Preferably, the component-body part 30 and the component-cover part 3 1 are
attached together in a detachable manner so as to facilitate the placement and removal of
the VIP material. In the structure shown in Fig. 4, the component-body part 30 and the
component-cover part 3 1 are attached together by clicking them together. The exterior
surface of the component-cover part 3 1 forms the front surface of the component. As
described above, in the invention's preferable implementation, the VIP material is placed
inside each component and adjacent to the component-cover part so that the
component-cover part 3 1 has particularly well-defined heat insulation capability, and that
hot air moisture will not be prone to condense into water upon making contact with the
exterior surface of the component-cover part 31.
[0056] As shown in Fig. 4, a foam heat-insulation material 42 can be placed inside of the
at least one component. Preferably, the foam heat-insulation material is placed inside of the
at least one component and adjacent to that component's rear surface.
[0057] It is easily understood that in a preferable particular implementation of the
invention, each component of the frame 3 may be structures the same. However, the
components of frame 3 can have other structures as long as the VIP material 4 1 can be
easily replaced so as to allow that that when the VIP is damaged, a new VIP can be
conveniently used to replace the damaged one. As such, it is ensured that the components
of the frame 3 have optimal water condensation prevention capability and are easy to
perform service and maintenance upon.
[0058] It is further appreciated that with the component structure implementation of the
invention, it is no longer required to use an electrical heating function, thus lowering
energy consumption.
CLAIMS
1. A frame used for refrigerating apparatus, the frame is composed by at least one
frame component,
characterized in that a VIP material is placed inside of the at least one frame
component.
2. The frame of Claim 1, wherein the VIP material is placed inside of the at least one
frame component and adjacent to the component's front surface.
3. The frame of anyone of Claims 1-2, wherein the at least one component comprises
a component-body part and a component-cover part that is attached to the component-body
part, the component-body part and the component-cover part together form a chamber that
holds the VIP material.
4. The frame of Claim 1, wherein the component-body part and the component-cover
part are attached together in a detachable manner.
5. The frame of any of Claims 1-4, wherein a foam heat-insulation material is further
placed inside the at least one component.
6. The frame of Claim 5, wherein the foam heat-insulation material is placed inside of
the at least one component and adjacent to the component's rear surface.
7. The frame of any of Claims 1-6, wherein the frame is formed as an opening to the
refrigerating apparatus that is used for retrieving and placing items to be refrigerated.
8. A frame for refrigerating apparatus, the frame comprises an upper component, a
lower component, a left component and a right component, among which, the upper
component and the lower component are attached to the left component and the right
component respectively so as to form a rectangular frame,
characterized in that at least one of the upper component, the lower component, the
left component and the right component has a VIP material placed inside.
9. The frame of Claim 8, wherein a VIP material is placed inside of the at least one
component and adjacent to the component's front surface.
10. The frame of any of Claims 8-9, wherein the at least one component comprises a
component-body part and a component-cover part attached to the component-body part,
the component-body part and the component-cover part together form a chamber that holds
the VIP material.
11. The frame of Claim 10, wherein the component-body part and the
component-cover part are attached together in a detachable manner.
12. The frame of any of Claims 8-1 1, wherein a foam heat-insulation material is
further placed inside the at least one component.
13. The frame of Claim 12, wherein the foam heat-insulation material is placed inside
of the at least one component and adjacent to the component's rear surface.
14. The frame of any of Claims 8-9, wherein the upper component, the lower
component, the left component and the right component each comprise a component-body
part and a component-cover part attached to the component-body part, the
component-body part and the component-cover part together form a chamber that holds the
VIP material.
15. The frame of Claim 14, wherein the component-body part and the
component-cover part are attached together in a detachable manner.
16. The frame of any of Claims 14-15, wherein the foam heat-insulation material is
further placed inside of the upper component, the lower component, the left component
and the right component.
17. The frame of Claim 16, wherein a foam heat-insulation material is placed inside of
the upper component, the lower component, the left component and the right component
respectively and adjacent to the each component rear surface.
18. The frame of any of Claims 8-17, wherein the upper component, the lower
component, the left component and the right component have the same structure.
19. The frame of Claim 8, wherein the upper component, the lower component, the
left component and the right component are attached in a detachable manner by multiple
attaching components in order to form the frame.
20. The frame of any of Claims 8-9, wherein the frame further comprises at least one
intermediate component attached to the upper component and the lower component
respectively or attached to the left component and the right component respectively.
21. The frame of Claim 20, wherein the at least one intermediate component is
attached to the upper component and the lower component or attached to the left
component and the right component in a detachable manner.
22. The frame of any of Claims 20-21, wherein a VIP material is placed inside of the
at least one intermediate component.
23. The frame of Claim 22, wherein the VIP material is placed inside of the at least
one intermediate component and adjacent to the component's front surface.
24. The frame of any of Claims 20-23, wherein the at least one intermediate
component has the same structure as the upper component, the lower component, the left
component and the right component.
25. The frame of any of Claims 8-24, wherein the frame forms an opening to the
refrigerating apparatus that is used for retrieving and placing items to be refrigerated.
26. A frame for refrigerating apparatus, the frame comprises an upper component, a
lower component, a left component, a right component and at least one intermediate
component, the upper component and the lower component are attached to the left
component and the right component respectively, the at least one intermediate component
is attached to the upper component and the lower component respectively or attached to the
left component and the right component respectively,
characterized in that at least one of the upper component, the lower component, the
left component, the right component and the at least one intermediate component has a VIP
material placed inside.
27. The frame of Claim 26, wherein the frame forms an opening of the refrigerating
apparatus that is used for retrieving and placing items to be refrigerated.
28. A refrigerating apparatus that uses a frame of any of the preceding claims.
29. The refrigerating apparatus of Claim 28, wherein the refrigerating apparatus
further comprises a main body and a door body, among which the frame is installed on the
front side of the main body, and the door body is installed on the main body and can be
rotated between an open position for opening the refrigerating apparatus and a closed
position for closing the refrigerating apparatus in a manner that allows the door body to
pivot back and forth.

Documents

Application Documents

# Name Date
1 817-DELNP-2015.pdf 2015-02-04
2 Form 13.pdf ONLINE 2015-03-03
3 Clean copy of claims.pdf ONLINE 2015-03-03
4 Form 5.pdf 2015-03-12
5 Form 3.pdf 2015-03-12
6 8075-180_CS.pdf 2015-03-12
7 Form 13.pdf 2015-03-13
8 Clean copy of claims.pdf 2015-03-13
9 817-DELNP-2015-GPA-(19-03-2015).pdf 2015-03-19
10 817-delnp-2015-Correspondence-others-(19-03-2015).pdf 2015-03-19
11 POA.pdf 2015-06-24
12 FORM 13_AFS.pdf 2015-06-24
13 FORM 1.pdf 2015-06-24
14 817-delnp-2015-GPA-(24-06-2015).pdf 2015-06-24
15 817-delnp-2015-Correspondence Others-(24-06-2015).pdf 2015-06-24
16 817-delnp-2015-Form-3-(25-06-2015).pdf 2015-06-25
17 817-delnp-2015-Correspondence Other-(25-06-2015).pdf 2015-06-25
18 817-delnp-2015-Others-(20-07-2015).pdf 2015-07-20
19 817-delnp-2015-Correspondence Other-(20-07-2015).pdf 2015-07-20
20 817-delnp-2015-Form-1-(29-07-2015).pdf 2015-07-29
21 817-delnp-2015-Correspondence Others-(29-07-2015).pdf 2015-07-29
22 817-DELNP-2015-FER.pdf 2018-12-24
23 817-DELNP-2015-RELEVANT DOCUMENTS [24-05-2019(online)].pdf 2019-05-24
24 817-DELNP-2015-PETITION UNDER RULE 137 [24-05-2019(online)].pdf 2019-05-24
25 817-DELNP-2015-FORM 3 [28-05-2019(online)].pdf 2019-05-28
26 817-DELNP-2015-RELEVANT DOCUMENTS [11-06-2019(online)].pdf 2019-06-11
27 817-DELNP-2015-MARKED COPIES OF AMENDEMENTS [11-06-2019(online)].pdf 2019-06-11
28 817-DELNP-2015-FORM 13 [11-06-2019(online)].pdf 2019-06-11
29 817-DELNP-2015-FER_SER_REPLY [11-06-2019(online)].pdf 2019-06-11
30 817-DELNP-2015-DRAWING [11-06-2019(online)].pdf 2019-06-11
31 817-DELNP-2015-COMPLETE SPECIFICATION [11-06-2019(online)].pdf 2019-06-11
32 817-DELNP-2015-CLAIMS [11-06-2019(online)].pdf 2019-06-11
33 817-DELNP-2015-AMMENDED DOCUMENTS [11-06-2019(online)].pdf 2019-06-11
34 817-DELNP-2015-ABSTRACT [11-06-2019(online)].pdf 2019-06-11
35 817-DELNP-2015-US(14)-HearingNotice-(HearingDate-13-02-2023).pdf 2023-01-11
36 817-DELNP-2015-Response to office action [02-02-2023(online)].pdf 2023-02-02
37 817-DELNP-2015-FORM 3 [02-02-2023(online)].pdf 2023-02-02
38 817-DELNP-2015-Correspondence to notify the Controller [13-02-2023(online)].pdf 2023-02-13
39 817-DELNP-2015-PatentCertificate07-03-2023.pdf 2023-03-07
40 817-DELNP-2015-IntimationOfGrant07-03-2023.pdf 2023-03-07

Search Strategy

1 817delnp2015_10-08-2018.pdf

ERegister / Renewals

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6th: 19 Apr 2023

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7th: 19 Apr 2023

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8th: 19 Apr 2023

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9th: 19 Apr 2023

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10th: 19 Apr 2023

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11th: 19 Apr 2023

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