Title of Invention

WINDMILL (VERTICAL AXIS) WORKS BY DIVERTEDWINDFORCE.

Abstract 'WINDMILL (VERTICAL AXIS) WORKS BY DIVERTED WINDFORCE' The instant invention deals with solution to technical flaws of existing Vertical Axis Windmill in which the wind strikes simultaneously on inward & outward facing sides of rotor blades which reduce efficiency. Hence this invention i.e. The Vertical Axis Windmill with Wind Guiding Device wherein the Vertical Plates (fig. 6) are fixed from bottom of Base structure (fig. 4) to top of rotor in annularly array. In between two Vertical Plates Inclined Plates (fig. 5) are fixed from bottom of Base structure to top of Base structure (fig. 4). These Plates are tilted towards the concave side of rotor blades (fig. 8). Vertical & Inclined Plates are fixed in angular and radial direction, so whenever wind blows from any direction it gets compressed and then diverted towards wind receiving blades. Also Vertical Plates protect the convex side of rotor blade from wind and same wind diverts towards wind receiving blades.
Full Text FORM 2
THE PATENT ACT 1970
(39 of 1970)
&
THE PATENTS RULES, 2003
COMPLETE SPECIFICATION
(See section 10 and rule 13)
1. TITLE OF THE INVENTION : VERTICAL AXIS
WINDMILL WITH GUIDING DEVICES
2. APPLICANT(S)

NAME
NATIONALITY
ADDRESS

KARIYA VINOD KUMAR CHAMANLAL.
INDIAN.
PLOT No. 299/A, APNA NAGAR, GANDHIDHAM, DISTRICT - KACHCHH, PIN : 370 201, GUJARAT (INDIA).


3. PREAMBLE TO THE DESCRIPTION : -
The following COMPLETE SPECIFICATION particularly describes the invention and the manner in which it is to be performed
HISTORY : -
Since time immemorial, human civilization has always had a quest for source of energy for an easy and comfortable life, and as a result other sources of energy like windmills were invented. Initially, this windmill was used only in running flourmills and pumping out water. After that, too many conventional energy sources like petroleum fuels were found and all these have been used in a very large quantity. Resultantly, now-a-days all the fuels are on the verge of exhaustion; so again, men are compelled to look towards non-conventional sources of energy and have to improve their techniques.
At present, power generation mostly comes from natural and conventional resources viz, water, coal and petroleum products and due to increased modern human consumption and rising cost of resources, it has created shortfall for the society and the industries. Hence, further improvement has become indispensable for maximum utilization of non-conventional energy sources, which is eco-friendly and economical.
In the last couple of centuries, drastic improvements and innovations took place in power generation through non-conventional energy sources, like solar and wind power across the globe. However, time and again, man is still far from tapping and utilizing wind power as source of energy in the best optimum manner.
Page 2

Presently, the power generation through wind energy is generated through horizontal and Vertical Axis Windmill, which have their own shortcomings and drawbacks. In horizontal axis windmill the cost of construction is heavy, operation is deterrent and difficult and unable to work at low wind velocity. Whereas the existing Vertical Axis Windmill vibrates on increased height and with high wind velocity, unable to work on low wind velocity and has high risk of instability. Further the harnessing capacity of existing Vertical Axis Windmill is much lower than optimum.
In earlier & present designs of Vertical Axis Windmills, the wind used to strike simultaneously with uniform pressure on inward facing side and outward facing side blades thereby resisting the rotation and hence reducing the efficiency. Coverage area of wind surface is limited to only diameter & height of rotor. Further the wind velocity in present models is utilized as available naturally.
Our instant invention (Wind Guiding Device) converts the wind energy into mechanical energy with the help of its Inclined Plates & Vertical Plates by diverting wind force towards wind receiving Blades of Vertical Axis Windmill, and it utilizes maximum received wind.
Page 3

4. DESCRIPTION :
IMAGE & DRAWINGS :-
The study of the description is particularly illuminating when done in conjunction with the Drawings and Images as under:-
FIGURE NO. 1
It is the computer model (Bird's Eye View Image) showing complete
system of Vertical Axis Windmill with Wind Guiding Devices. It shows
arrangement of different parts such as Base structure (1), radial tie
beams (2), peripheral tie beams (3), Windows with spring tension
shutters (4), Inclined Plates ((5) tapering & angulated along periphery
of rotor), Vertical Plates ((6) radiating & angulated along periphery of
rotor), assembly of Rotor blades (7) with Caps (8), Central Shaft (9),
vertical rotating pipe (10), top & bottom Bearings (11).
Besides these other parts are Gear Box (12), Coupling Systems (13)
and Generator (14).
FIGURE NO. 2
It shows the Three Dimensional Wire Mesh Drawing of Vertical Axis Windmill with Wind Guiding Device with similar arrangements as mentioned in figure 1.
FIGURE NO. 3
It shows the Top View / Plan of Vertical Axis Windmill with Wind Guiding Device. Different parts labeled are the Base structure (1), radial Tie Beams (2), peripheral Tie Beams (3), Inclined Plates ((5) tapering & angulated along periphery of rotor), Vertical Plates ((6) radiating & angulated along periphery of rotor). These Vertical & Inclined plates having Windows (4) with spring tension shutters, Rotor assembly ((7 to 11) central Shaft with Blades assembly) & movement of Rotor blades.
Page 4

FIGURE NO. 4
It shows the Three Dimensional Wire Mesh Drawing of Base structure
of Wind Guiding Device.
FIGURE NO. 5
It shows the Front View of Inclined Plates ((5) tapering & angulated
along periphery of rotor) having Windows (4) with spring tension
shutter.
FIGURE NO. 6
It shows the Front View of Vertical Plates ((6) radiating & angulated
along periphery of rotor) having Windows (4) with spring tension
shutter.
FIGURE NO. 7
It shows the Three Dimensional Wire Mesh Figure of Rotor assembly. Rotor Blades (7a & 7b) with caps (8) are mounted with top & bottom bearings (11) on the Central Shaft (9) and Vertical Pipe (10).
FIGURE NO. 8
It shows the Front and back View of the Rotor Blade (7a & 7b), which is section of a hollow cylinder, one side is inward facing / concave surface (7a) and other is outward facing / convex surface (7b). Rotor blades are having a Cap (8) at each top & bottom on the concave sides. The cap is a segment of lid / cover of a cylinder.
FIGURE NO. 9
It shows arrangement of Gear box (12), coupling system (13) and
Generator set (14).
FIGURE NO. 10
This diagram shows the concept of wind circulation, which speaks itself for this invention. Here the wind Is guided, diverted & compressed by Vertical & Inclined plates to strike only concave side of Rotor Blades with more velocity.
Page 5

DETAILED DESCRIPTION OF IMAGES & DRAWINGS :-
These and other attributes of the instant invention will become clear on thorough examination and study of the description of the best mode of carrying out the invention. The study of the description is particularly illuminating when done in conjunction with the Drawings and Images as under:-
FIGURE NO. 1
It is the computer Model (Bird's Eye view Image) showing complete structure & system of Vertical Axis Windmill with Wind Guiding Devices. It shows arrangement of different parts such as Base structure (1), radial tie beams (2), peripheral tie beams (3), Windows with spring tension shutters (4), Inclined Plates ((5)tapering & angulated along periphery of rotor), Vertical Plates ((6) radiating & angulated along periphery of rotor), assembly of Rotor blades (7) with Caps (8), Central Shaft (9), vertical rotating pipe (10), top & bottom Bearings (11).
Besides these other parts are Gear Box (12), Coupling Systems (13) and Generator (14). Detailed functions of each part are specified in separate figures given below.
FIGURE NO. 2
It shows the three dimensional wire mesh figure of Vertical Axis Windmill with wind guiding device. The instant invention is mounted with Inclined Plates ((5) tapering & angulated along periphery of rotor with / without inbuilt Windows (4) having spring tension shutters) (fig. 5), Inclined Plates are fixed between two adjacent Vertical Plates (fig. 6) from bottom of Base structure to top of Base structure (fig. 4), The Vertical Plates ((6) angulated & radiating along periphery of rotor; with / without inbuilt Windows having spring tension shutters) (fig. 6) are
Page 6

fixed from bottom of Base structure (1) to top of Rotor (fig. 7) with a radial clearance from the Rotor (fig. 7). Top edges of Inclined & Vertical Plates are tied up through radial Tie Beams (2) & peripheral Tie Beams (3).
The Base structure ((1) fig. 4) of Wind Guiding Device comprises of Base platform at its bottom level & Tie Beams (Radial & Periphery) at its top & bottom level. The Shape of Base structure (fig. 4) can be any regular or irregular shaped polygon, Instant Drawings & Image are for Octagonal polygon in which the Base structure's top & bottom polygons are placed at a particular angle.
The Inclined plate ((5) fig. 5) is regular or / and irregular tapered shaped & Inclined towards inside radially extending from bottom level of Base structure to top level of Base structure. Each Inclined plate is fixed between two adjacent Vertical Plates (fig. 6) on entire periphery. One bottom corner of each inclined plate (fig. 5) is shifted towards inside along edge of Vertical plate (fig. 6) so as to create a tilt angle with respect to bottom edge & a side edge.
Each Vertical Plate ((6) fig. 6) is fixed from bottom of Base structure (fig. 4) to top of rotor (fig. 7). They are tied up through peripheral & radial Tie Beams on inner & outer edges with Base structure (fig. 4) and central shaft (9). They are radially angulated equal to the angle difference between inner & outer polygon.
Between every two Vertical Plates (fig. 6), there is one Inclined plate (fig. 5), which will create a shape and dimension that is Inclined and angled towards windward side blades. Each Vertical plate (fig. 6) is also angled towards wind receiving blades ((7a) fig. 8). Vertical Plate (fig. 6) are angulated & radiating on periphery of rotor (fig. 7) and are mounted from bottom of Base structure (fig. 4) to top of the Rotor.
Page 7

The Rotor (fig. 7) is surrounded with Inclined & Vertical Plates on entire periphery. These Vertical & Inclined Plates are mounted with inbuilt Windows (4) having spring tension shutters (fig. 5, 6).
FIGURE NO. 3
It shows the Top View / Plan of Vertical Axis Windmill with Wind Guiding Devices. Different parts labeled are the Base structure ((1) fig. 4), Inclined Plates ((5) tapering & angulated along periphery of rotor) (fig. 5), Vertical Plates ((6) radiating & angulated along periphery of rotor) (fig. 6); Plates are having Windows (4) with spring tension shutters, Radial Tie Beams (2) and Peripheral Tie Beams (Inner & Outer) (3), Movement of Rotor blades. Other Details are similar as specified in description of fig 2.
FIGURE NO. 4
It shows the Three Dimensional Wire Mesh Drawing of Base structure (1) of Wind Guiding Device. Each Inclined plate (fig. 5) is fixed between two adjacent Vertical Plates (fig. 6). Top edges of Inclined plates are tied up through radial (2) & peripheral (3) Tie Beams. It comprises of Base platform at its bottom level & Tie Beams (Radial & Periphery) at its top level.
The Shape of Base structure can be any regular or irregular shaped polygon. Instant Drawings & Images are for Octagonal polygon in which the Base structure's top & bottom polygons are placed at particular angle.
FIGURE NO. 5
The Inclined plate(s) (5) are regular or / and irregular tapered shaped with window (4) & inclined towards inside radially extending from bottom level of Base structure to top level of Base structure (fig. 4).
Page 8

They are fixed between two adjacent Vertical Plates (fig. 6) on entire periphery.
One bottom corner of each Inclined plate is shifted towards inside along edge of Vertical plate so as to create a tilt angle with respect to bottom edge & a side edge.
It is Inclined plate (tapering & angulated along periphery of rotor), which is inclined towards wind receiving side (concave side) of rotor blade ((7a) fig. 8). It is mounted in annular array (around the rotor). It is from base to top edge of Base structure (fig. 4). The top edge of Inclined plate is inclined towards inner peripheral beams and it is angulated and radiating towards wind receiving side (concave side) of rotor blade ((7a) fig. 8).
FIGURE NO. 6
The Vertical Plate(s) (6) with window (4) are mounted in annular array from bottom of Base structure to top of rotor (fig. 7). They are tied up through peripheral & radial Tie Beams on inner & outer edges with Base structure. They are radially angulated equal to the angle difference between inner & outer polygon.
The Vertical Plates are angulated & radiating along periphery of rotor (fig. 7). It is radially angulated towards wind receiving side (concave side) of rotor blade ((7a) fig. 8) and which will vary as per design specifications.
FIGURE NO.7
It shows the Three Dimensional Wire Mesh Drawing of Rotor assembly. The Blades ((7a & 7b) fig. 8) are section of a hollow cylinder fixed around Vertical Pipe (10). They are mounted with top & bottom bearings (11) on the Central Shaft (9) and are able to rotate vertically.
Page 9

Front side of each blade (fig. 8) has concave shape (inward face (7a)) and the backside has convex shape (outward face(7b)) with caps (8) at top & bottom.
FIGURE NO. 8
It shows the Front and back View of the Rotor Blade; which is section of a hollow cylinder, one side is inward facing / concave surface (7a) and the other side is outward facing / convex surface (7b). Rotor blades are having a Cap (8) at each top & bottom on the concave sides. The cap is a segment of lid / cover of a cylinder.
FIGURE NO. 9
It shows arrangement of Gear box (12), Coupling system (13) and
Generator set (14) which are coupled for converting mechanical energy
into Electrical energy, (or store it in a potential form by weight lifting
method).
FIGURE NO. 10
This diagram shows the concept of wind circulation, which speaks itself for this invention. Here the wind is guided, diverted & compressed by Vertical Plates (fig. 6) and Inclined Plates (fig. 5) to strike only concave side of Blades with much more velocity.
Page 10

METHOD OF OPERATION
The Theme, Design & Concept of instant invention works with Inclined Plates ((5) tapering & angulated along periphery of rotor) (fig. 5) and the Vertical Plates ((6) radiating & angulated along periphery of rotor) (fig. 6). Each Inclined Plates (fig. 5) are fixed between two adjacent Vertical Plates (fig. 6). Both the Vertical & Inclined Plates are oriented at such an angle that wind gets diverted, compressed and guided towards concave surface of the rotor Blades (wind receiving blade ((7a) fig. 8)). Top edges of Inclined & Vertical Plates are tied up through peripheral & radial Tie Beams.
Inclined Plates ((5) fig. 5) receive wind from bottom to top of Base structure (fig. 4) and diverts wind toward windward side (concave surface) of rotor blades ((7a) fig. 8). Further the wind gets compressed (inside two Vertical Plates) when it strikes towards Inclined & Vertical Plates simultaneously.
When the wind blows from any direction it will strike Inclined and Vertical Plates simultaneously before reaching the Rotor assembly (fig. 7). The Inclined Plates (fig. 5) will divert & guide wind from bottom to upwards radially towards concave surface of rotor Blades (wind receiving blades) ((7a) fig. 8), while the Vertical Plates (fig. 6) will divert, compress & guide wind circumferentially & radially towards concave surface of rotor Blades (wind receiving blades) ((7a) fig. 8) and induce orbital-cum-tangential velocity, thereby increasing the rotations tremendously. Further, the top & bottom caps of rotor blades ((8) fig. 8) will restrict the movement of the wind upwards and
Page 11

downwards after striking the rotor blades; which increases the wind pressure hence increasing the rotations considerably.
In instant invention, the wind with the help of Vertical Plates (radiating & angulated along periphery of rotor) ((6) fig. 6) & Inclined Plates (tapering & angulated along periphery of rotor) ((5) fig. 5) will be tangentially diverted & will focus only on the windward side concave surface of rotor Blades (wind receiving blades) ((7a) fig. 8); thus giving it more strength to rotate faster in clockwise or anticlockwise direction as per the arrangement of plates & Rotor blades. This system will not permit rotation of Blades in an opposite direction other than designed for in any given condition.
Between every two Vertical Plates ((6) fig. 6), there is one Inclined plate ((5) fig. 5), which will create a shape and dimension that will divert, compress and guide wind only towards wind receiving side (concave side) blades ((7a) fig. 8). At the same time the radially angulated Vertical Plates ((6) fig. 6) protects convex surface (outward facing) side rotor blades ((7b) fig. 8) from striking wind in opposite direction and the same wind diverts towards windward facing blade (wind receiving blades) ((7a) fig. 8).
Instant invention is most useful at low wind power; it receives more wind and increases velocity by diverting, compressing & guiding the wind through Vertical & Inclined plates. Also it utilizes wind blowing on it from any direction and converts wind energy into mechanical energy, which is further converted into Electrical energy (or store it in a potential form by weight lifting method).
In case of higher than maximum permissible wind velocity, the inbuilt Windows with spring tension shutters (4) fixed on Inclined & Vertical
Page 12

Plates (fig. 5, 6) will open & allow the excess wind to bye pass and maintain R.P.M. (rotations per minute) of the rotor as per the design parameters.
Further, Wind blows on wind guiding device and creates low pressure on other side (leeward side) of Wind Guiding Deice which further helps rotor to rotate smoothly (fig. 10).
Also, the compressed wind on the concave side of Blades and uncompressed wind on the convex side will create pressure difference and induce more rotations (fig. 10).
Normal Vertical windmill receives wind to the extent of the size of the Rotor assembly, whereas the instant structure & system of invention extends the area of operation of Rotor assembly depending upon length, breadth & height of Inclined & Vertical Plates (placed in circumferential array around the rotor) which is equipped to receive and divert the surplus wind towards Rotor assembly.
Hence this system with Plates will optimize the rotation of Blades and efficiency of windmill. Even a breeze of normal blowing wind will be utilized to generate energy.
The gear box (12), coupling system (13) and Generator set (14) (fig. 9) are installed inside of base structure to convert mechanical energy into Electrical energy, (or store it in a potential form by weight lifting method).
This instant invention will prove to be a boon for the human
civilization, industries, and economy and in particular energy sector
across the globe, as it is economical, having long-term life & low
maintenance and has wide areas of application. The instant invention
is an outcome of our continuous research, study, experiments,
dedication, foresight and sacrifice.
Page 13

I Claim,
A Vertical axis Wind mill which works by diverted wind force using wind guiding devices comprises of Base platform (1) at its bottom level, Radial Tie Beams (2), Peripheral Tie Beams (3), Base structure (fig.4), Inclined plates (angulated & tapering ((5) fig.5)), Vertical plates (radially angulated ((6) fig.6)), Rotor assembly (with Rotor Blades (7a & 7b) with caps (8), Central Shaft (9), Vertical rotating pipe (10), top & bottom Bearings (11) (fig.7)), Gear Box (12), Coupling Systems (13) and Generator (14) / the said Inclined plates (5) are fixed between two adjacent Vertical plates(6) from bottom of Base structure to top of Base structure at a particular angle & inclination; the Vertical plates (6) are fixed from bottom of Base structure to top of Rotor at a particular angle & clearance from the Rotor in a radial way, the Rotor Blades (7a & 7b) are section of a hollow cylinder having a Cap (8) at each top & bottom on the concave sides & they are fixed on Vertical rotating pipe (10), which is mounted with top and bottom Bearings on the Central shaft (9), the Rotor assembly rotates around vertical axis, divert, compress and guide the wind only towards wind receiving side (concave side) of Rotor Blades (7a) with help of inclined plates (5) and Vertical plates (6).
A Vertical axis Wind mill as claimed in claim 1, wherein The top edge of each Inclined plate (fig.5) is inclined towards inner peripheral tie beams and it is angulated and radiating towards wind receiving side (concave side) of Rotor Blades (7a). A Vertical axis Wind mill as claimed in claims 1 or 2, wherein the Inclined plate(fig.5) is regular or/and irregular, tapered shaped



and inclined towards inside radially, extending from bottom level of Base structure to top level Base structure.
4. A Vertical axis Wind mill as claimed in claim 1 or 2, wherein the one bottom corner of each Inclined plate is shifted towards inside along edge of vertical plate, so as to create tilt angle with respect to bottom edge and side edge.
5. A Vertical axis Wind mill as claimed in the claim 1, where in each Vertical plate (fig.6) is angulated and radiating on periphery of rotor; each Vertical plate is angled towards wind receiving side (concave side) of rotor blade (7a) and its' angle will vary as per requirement,
6. A Vertical axis Wind mill as claimed in claims 1 or 5, wherein the Vertical plate (fig.5) is regular or/and irregular, rectangle shaped and radially angulated towards wind receiving side (concave side) of rotor blade (7a), extending from bottom level of Base structure to top of rotor.
7. A Vertical axis Wind mill as claimed in the claim 1, wherein between every two Vertical plates, one Inclined plate is provided which creates a shape that is inclined and angled towards wind receiving side (concave side) of Rotor Blade (7a).
8. A Vertical axis Wind mill as claimed in claims 1, where in the Rotor is surrounded with Inclined and Vertical plates on its entire periphery, the said plates are mounted with or without inbuilt Windows (4) having spring tension shutter (fig.5 & 6).
9. A Vertical axis Wind mill as claimed in claims 1 or 8, wherein the Rotor Blades, which is a section of hollow cylinder, one side is Inward facing (Concave surface (7a)) and the other side is



Outward facing (Convex surface (7b)), having a Cap (8) at each top and bottom on the concave side (fig.8).
10. A Vertical axis Wind mill as claimed in claim 1, wherein the shape of the Base structure is any regular or irregular shape polygon, the Base structure's top and bottom polygon are placed at a particular angle.
11. A Vertical axis Wind mill as claimed in above claims, wherein the Arrangement of Inclined plates (5) and Vertical plates (6) is such as to receive more wind, protect Outward facing of Rotor Blade (7b), divert, compress and guide the wind only towards wind receiving side (concave side) of Rotor Blades (7a).

12. A Vertical axis Wind mill as claimed in claim 1, wherein the direction of movement of Rotor is Clockwise or Counter Clockwise,
13. A Vertical axis Windmill with Wind Guiding Devices such as here in described in claim 1 and illustrated with references to the accompanying drawings.
Date: 12th Sept. 2005
(KARIYA VINOD KUMAR CHAMANLAL)




ABSTRACT
'WINDMILL (VERTICAL AXIS) WORKS BY DIVERTED WINDFORCE'
The instant invention deals with solution to technical flaws of existing Vertical Axis Windmill in which the wind strikes simultaneously on inward & outward facing sides of rotor blades which reduce efficiency. Hence this invention i.e. The Vertical Axis Windmill with Wind Guiding Device wherein the Vertical Plates (fig. 6) are fixed from bottom of Base structure (fig. 4) to top of rotor in annularly array. In between two Vertical Plates Inclined Plates (fig. 5) are fixed from bottom of Base structure to top of Base structure (fig. 4). These Plates are tilted towards the concave side of rotor blades (fig. 8). Vertical & Inclined Plates are fixed in angular and radial direction, so whenever wind blows from any direction it gets compressed and then diverted towards wind receiving blades. Also Vertical Plates protect the convex side of rotor blade from wind and same wind diverts towards wind receiving blades.
Page 17 of 27
1 6 SEP 2005

Documents:

326-mum-2005-abstract(16-9-2005).pdf

326-mum-2005-abstract(granted)-(20-6-2006).pdf

326-mum-2005-abstract-complete.doc

326-mum-2005-abstract-complete.pdf

326-MUM-2005-AGREEMENT(1-7-2009).pdf

326-mum-2005-cancelled pages(27-02-2006).pdf

326-mum-2005-cancelled pages(27-2-2006).pdf

326-mum-2005-claims(complete)-(16-9-2005).pdf

326-mum-2005-claims(granted)-(20-6-2006).pdf

326-mum-2005-claims(granted)-(27-02-2006).doc

326-mum-2005-claims(granted)-(27-02-2006).pdf

326-mum-2005-claims-complete.doc

326-mum-2005-claims-complete.pdf

326-mum-2005-correspondence(15-6-2009).pdf

326-mum-2005-correspondence(19-7-2008).pdf

326-MUM-2005-CORRESPONDENCE(2-7-2009).pdf

326-mum-2005-correspondence(27-02-2006).pdf

326-mum-2005-correspondence(27-2-2006).pdf

326-mum-2005-correspondence(ipo)-(20-06-2006).pdf

326-mum-2005-correspondence(ipo)-(27-7-2009).pdf

326-mum-2005-correspondence-received-021205.pdf

326-mum-2005-correspondence-received-080905.pdf

326-mum-2005-correspondence-received-210305.pdf

326-mum-2005-correspondence-received.pdf

326-mum-2005-descripiton (complete).pdf

326-mum-2005-descripiton (provisional).pdf

326-mum-2005-description(complete)-(16-9-2005).pdf

326-mum-2005-description(granted)-(20-6-2006).pdf

326-MUM-2005-DESCRIPTION(PROVISIONAL)-(22-3-2005).pdf

326-mum-2005-drawing(16-9-2005).pdf

326-mum-2005-drawing(granted)-(20-6-2006).pdf

326-mum-2005-drawings(27-02-2006).pdf

326-mum-2005-drawings.pdf

326-mum-2005-form 1(22-03-2005).pdf

326-mum-2005-form 1(27-02-2006).pdf

326-MUM-2005-FORM 16(1-7-2009).pdf

326-mum-2005-form 16(19-7-2008).pdf

326-MUM-2005-FORM 16(2-7-2009).pdf

326-mum-2005-form 18(29-12-2005).pdf

326-mum-2005-form 2(complete)-(16-9-2005).pdf

326-mum-2005-form 2(granted)-(20-6-2006).pdf

326-mum-2005-form 2(granted)-(27-02-2006).doc

326-mum-2005-form 2(granted)-(27-02-2006).pdf

326-mum-2005-form 2(provisional)-(22-3-2005).pdf

326-mum-2005-form 2(title page)-(complete)-(16-9-2005).pdf

326-mum-2005-form 2(title page)-(granted)-(20-6-2006).pdf

326-mum-2005-form 2(title page)-(provisional)-(22-3-2005).pdf

326-mum-2005-form 25(27-02-2006).pdf

326-mum-2005-form 26(19-7-2008).pdf

326-mum-2005-form 26(21-03-2005).pdf

326-mum-2005-form 3(22-03-2005).pdf

326-mum-2005-form 5(08-09-2005).pdf

326-mum-2005-form 9(16-09-2005).pdf

326-mum-2005-form-1.pdf

326-mum-2005-form-18.pdf

326-mum-2005-form-2-complete.pdf

326-mum-2005-form-2-provisional.doc

326-mum-2005-form-2-provisional.pdf

326-mum-2005-form-25.pdf

326-mum-2005-form-26.pdf

326-mum-2005-form-3.pdf

326-mum-2005-form-5.pdf

326-mum-2005-form-9.pdf

326-MUM-2005-POWER OF ATTORNEY(1-7-2009).pdf

326-mum-2005-specification(amended)-(27-2-2006).pdf

abstract1.jpg


Patent Number 202026
Indian Patent Application Number 326/MUM/2005
PG Journal Number 42/2008
Publication Date 17-Oct-2008
Grant Date 20-Jun-2006
Date of Filing 22-Mar-2005
Name of Patentee KARIYA VINOD KUMAR CHAMANLAL
Applicant Address PLOT NO. 299/A, APNA NAGAR, GANDHIDHAM, DISTRICT-KACHCHH.
Inventors:
# Inventor's Name Inventor's Address
1 KARIYA VINOD KUMAR CHAMANLAL PLOT NO. 299/A, APNA NAGAR, GANDHIDHAM, DISTRICT-KACHCHH, PIN : 370 201, GUJARAT.
PCT International Classification Number Nil
PCT International Application Number N/A
PCT International Filing date
PCT Conventions:
# PCT Application Number Date of Convention Priority Country
1 NA