The present invention relates to electrically-operated motor driven fruit juicers that has a controlled motor providing a source of rotary motion that rotate clockwise or counter-clockwise according to the user selection when commanded to operate, a mechanical interface, and a rotary juicing device that comprising , a mixing rod, a limiter, and a multi juicing member assembly which composed from at least one juicing member, that preferably made of flexible nylon cord(s)/line(s)/string(s), or from rust-proof metal wire(s) or from stainless spring(s) steel, that replacing, a conventional blade. The rotary juicing device is coupled to the motor via the mechanical interface, and configured for retrievable introduction into the interior of a suitable fruit.
The fresh squeezed juice of citrus fruit such as orange or red/white grapefruit or red orange or pomelo or red pomelo are consumed frequently as a beverage or constituent of food or as a flavoring in the nutrition of a lot of world-wide populations. Most of the consumers are drinking it only in their houses or in restaurants during light meals, breakfast, lunch, supper, parties and sometimes in outdoors events. They prepare it mainly by using their electrically-operated kitchen motor driven fruit juicers. Users who understand what's good for their body drink it in the preparation stage of the food before the meal, or one hour after the meal. Millions of vegetarians are using healthy natural citrus or other fruits juices frequently in their daily nutrition.
It's a known fact that almost everybody likes to drink fruits juices. To fulfill these huge need and desire of the consumers, a lot of different types of fruit juicers where designed and produced by manufacturers.
Long experience of usage with different types of juicers reveals that, the more the juicers structure is complicated with lots of parts to clean, the messier they are, so customers are exhausted and frustrated, since most of them avoiding and disliking cleaning, washing and drying them, as well as kitchenware or any others simple or complicated instruments. To solve this problem, and to earn fortune from this huge market that have this real, solid and existing need, manufacturers are producing fruits nectars in huge industrial quantities. One of these nectars is Citrus nectar, for example that have the followings ingredients: Filtered water, Orange Concentrate, Orange Cells, Grapefruit Concentrate, Red Orange Concentrate, Citric Acid, Sweetie Concentrate, Vitamin C, Natural Flavorings, Natural Stabilizer Pectin, Folic Acid, Sweetener Sucralose, etc. In the nectars market, it is accepted that the minimum declared fruit content is about 50%. Manufacturers are also producing light fruits drinks in vast industrial quantities, with different fruits, tastes, colors, mixture, dose etc. One of these drinks is grapefruit drink for example, that have the followings ingredients: Filtered water, Grapefruit Juice, Grapefruit components, Natural Stabilizer Pectin, Citric Acid, Sugar, Natural Flavorings, Sweetener Sucralose, Preservatives (E-211, Sulfite), Vitamin C, Folic Acid, Vitamin B-12, etc. To be more attractive to the customers, and to increase their sales and profits, manufacturers are enriching the nectars and the light fruits drinks with vitamins, producing them with or without fruit pulp, with or without sugar supplement as DIET, without preservatives, as low calorie drinks, and selling them in colorful and friendly cardboard boxes, for example. So, it's known that none of the nectars or the light fruits drinks is made only from pure natural juice. The ingredients of these juices are many.
In order to supply the necessity for real natural fresh and squeezed fruit juices to the consumers, different types of Manually operated and Motor driven fruit juicers where invented and manufactured.
Conventional Manually operated fruit juicers are made simply of a plastic juicing element that projecting above a juicer in which juice extracted/squeezed from a fruit is collected in a downwardly pot. To squeeze/extract juice, the user generally cut the fruit for at least two pieces. The chosen cut up part of the fruit is grasped by the user's hand that pressed it down, pushing and crushing it on the juicing element and the wrist joint is repeatedly twisted, again and again and again, thereby rotating randomly the fruit around the juicing element that exists generally in a constant location. The relatively strong forces and the repeated motions required during the juice extraction may result in friction of bones, pain and inflammation of the wrist joint and/or worsening of secondary osteoarthritis or degenerative arthritis or rheumatoid arthritis symptoms. Additionally, this juice extraction process lives juice drops everywhere, so it's a bit messy and some washing and cleaning steps need to be taken.
Traditional Motor driven fruit juicers are considered easy to operator, got better efficiency but often bulkier than manual juicers. Additionally, the added weight of the motor may make them less desirable for use by gentle and elderly customers. Also, motor driven fruit juicers are much more expensive to buy and maintain. The juice extraction process lives a lot of juice remainders, mostly on its inner parts, since most of these instruments are partially sealed, or sealed when they are working. The more their structure is complicated with lots of parts to clean, the messier exhausted and frustrated they are to the lazy customers, who are the majority.
Because of all the disadvantages of the abovementioned juicers, a new solution was needed to improve and to provide the public with. a new and very useful choice. A solution that people will love, solution that will have all the advantages that detailed in the objects of the invention section. Since, that almost everybody likes to drink the real thing—the natural fruits juices, therefore it will be easier to sell a product that most of the people likes or love than to sell something that some of them need.
Since the present invention is to be shared with almost everyone, from almost every social and economic class, in every country, at any time and in any place, therefore a global market is waiting. This device will allow millions to consume fresh, natural and clean fruit juices like they have never use before.
The main part of the present invention consists on a device (
The fruit juicer comprising mainly from a controlled motor providing a source of rotary motion that rotate clockwise or counter-clockwise according to the user selection when commanded to operate, and from a rotary juicing device coupled to the motor and configured for retrievable introduction into the interior of the suitable fruit. The rotary juicing device being rotated by operation of the motor to produce juice that remains in the interior of the suitable fruit, and the rotary juicing device being retrieved out of the interior of the fruit to allow introduction therein of a straw for retrieving juice out of the fruit.
The rotary juicing device includes a mixing rod supporting at least one juicing member. The notion/combination of the three words—rotary juicing device, will be used in this current fruit juicer patent, by the short definition as—device, or—the device.
The mixing rod and the at least one juicing member are configured for retrievable insertion into the interior of the fruit.
The mixing rod is a rotating rod that preferably made of non-toxic stiff and straight plastic rod (from any selected color), or from a rust-proof metal rod or from a stainless steel rod, or from a wooden rod (like the chopsticks wood or any similar wood). It can also be made of any other material(s) that approved/certified/confirmed by the qualified authorities.
The at least one juicing member is flexible and pliable.
To be more accurate, the Fruit Juicer includes the following at least four main units: (1) The Rotary Juicing Device Unit (RJD); (2) The Control & Drive Unit (CDU); (3) The Mechanical Interface Unit (MIU); (4) And the Filter Straw Unit (S/M FS).
These at least four main units includes the following at least seven sub-units:
At least two physically separated main units are quickly connected or taken apart via/by the third unit which is the mechanical interface unit, to enable the juicing process: (1) The rotary juicing device unit. (2) The control & drive unit.
The control & drive unit (CDU) and the mechanical interface unit (MIU) are connected and fixed physically and permanently together as one piece.
The motor axis connected to the mechanical interface with a suitable coupling. This coupling already exists in different versions of motor driven fruit juicers—so, it is not counted as a new part of the Fruit Juicer, but its use by the device is recommended.
The rotary juicing device is an elongated assembly that has at least one juicing member that preferably made of flexible nylon line(s)/cord(s), or from rust-proof metal wire(s) or from stainless spring(s) steel or from any other material(s) that have equal or better qualities that approved/certified/confirmed by the qualified authorities. It's replacing a conventional blade.
The rotary juicing device unit adapted for attachment to the control & drive unit via/by the mechanical interface unit that have also a quick-release blade ability.
The juicing members perform juicing, extracting, mixing, squeezing, cutting, crushing and compress when the mixing rod rotate preferably fast in the interior of the suitable fruit.
To juice/extract/squeeze juice with the device, the user preferably remove the fruit protuberance and reveal the protuberance hole. The user enters slowly the multi juicing member, from the tip into the suitable fruit, through the fruit protuberance hole, almost till the limiter height. Inside the fruit, the juicing members bent or twisted randomly to all the sides during the vertical fast rotation of the mixing rod that connected to the motor that is fixed in the control & drive unit, so they generate fruit juice. Any other penetration points on the fruit casing are possible but are not preferred or recommended.
The juicing members are fixed at different elevations with respect to each other. There are at least several layers of juicing members; their quantity/number depend on the size and the structure of the fruit. In every layer, there is at least one or several juicing member(s). Basically, there is one juicing member from each side of the mixing rod in the same elevation. Practically, these two juicing members in the same elevation can be counted as one with two ends if they are made from one piece that passes through a hole that was made (drilled, for example) especially for this purpose in the mixing rod.
Each juicing member (“branch”) in every layer can be built/made equally or differently from the other juicing members in the multi juicing member sub-unit (“tree”) according to each specific design. Every juicing member got its own unique characteristics: (1) Thickness Shape (circular, square, rectangular, triangle etc); (2) Length Shape; (3) Thickness of the homogeneous circle juicing member (1.3 mm, 1.6 mm, or 2.0 mm, etc); (4) Direction for winding; (5) Active Length; (6) Type(s) of material(s); (7) Weight; (8) Elasticity level; (9) Roughness level; (10) Material density level; (11) Structure (twined from several fibers or wires or from one homogeneous fiber or wire); (12) For heavy or light duty; (13) Color; (14) End piece types; (15) Outer Edge Form (ball shaped, straight cut, etc); (16) Edge unit; (17) Angle; (18) Location; (19) Short or Long flexible line/cord; (20) Capture method; (21) Connection type; (22) Depth of the drilling, etc.
The abovementioned characteristics, plus: (1) the Type of the rotary juicing device (thin, thick, coarse, etc); (2) the Shape of rotary juicing device (triangle, spherical, ellipse, etc); (3) the number of the active layers; (4) the rotation mode (CW, Variable, Programmed); (5) the rotation speed of the mixing rod; (6) the angle of the penetration into the fruit; (7) the depth of the penetration into the fruit; (8) the homogeneous motion in all the inner relevant content of the fruit; (9) the time work duration inside the fruit; (10) and some other motion control parameters. All these together determine the size and the quality of the juicing (the process to extract the juice of)/squeezing inside the fruits.
The limiter sub-unit is a variable mechanism biased on a screw—thread (only for example), which set manually by the user, for avoiding any damage to the fruit peels, so it eliminates any juice leakage(s). Any better solution can be counted.
The mechanical interface unit (MIU) coupled the rotary juicing device to the controlled motor.
When the juice is ready inside the suitable fruit, the rotary juicing device being retrieved out of the interior of the fruit to allow introduction therein of a straw (a single or a multi preferable filter straw) for retrieving juice out of the fruit.
A suitable fruit—is a fruit that: (1) Its shell has to be thick, hard and strong enough. (2) Juicy inside. (3) With little amount of seeds, that won't cause any cracking of the shell during the squeeze, extract etc. its preferable, (4) Homogenous inside. (5) Has to be for all kinds of fruits exist in the world. (6) The values of all these parameters must be measured carefully.
The objects of the present invention are:
(One) To provide the best solution for making/getting maximum squeezed, natural and fresh fruit juice in an interior of a suitable fruit, under the sealed fruit peel that apricots as a cup, since the fruit peel left almost one complete piece after the penetration and the juicing/squeezing/mixing processes. Because of this great advantage there is no need to remove the juice from the fruit to an external cup.
(Two) To provide a mini portable and controlled fruit juicer (
(Three) To provide a personal motor driven Fruit Juicer.
(Four) To provide a compact, simple to transport and lightweight indispensable indoors, kitchens and outdoors tool for personal usage with different designing shapes, colors, sizes and names. This tool is almost for all: kids, teenagers, young adults, parents, grandparents, and the elderly.
(Five) To provide a fruit juicer for people on-the-go, like workers everywhere, athletes in training, trippers, pupils, students, soldiers, people recovering from sickness, injury or surgery, etc. People will conveniently carry it to vacations, to work, to school, to football pitch, tennis court, to play, to watch games from all the kinds, to exercise, on a walk, on a bike ride, on a run, on the bus, in a car, in a train, in a plane etc.
(Six) To provide a low cost fruit juicer.
(Seven) To provide a fruit juicer that is convenient to carry, friendly, simply, easy to use and fun for usage, share and maintain. For example, it's easy for beginners because its operation is simple, and the consumers can start using it a few minutes after purchasing.
(Eight) To provide only the inner-fruit content, without any additional and external additives such as preservatives or any other synthetic or natural ingredients. The option to get also inner fruit peel particles inside the blend/puree required the usage of multi juicing member (
(Nine) To provide the best solution for getting clean, squeezed and natural fruit juice without chemicals or toxic materials like extermination materials or acidic rain that are mostly saturated inside almost every existing regular fruits peel. It's known that these poisons are pressed and leak from the fruit peel into the clean juice, during every manual or automatic crushing or squeezing process of almost any partial or entire fruit which includes some or all of its peel at the same process time, in home kitchen's where people are using their manual juice squeezers or their electrically-operated juicers, or in the industrial production lines that are using big industrial juicers.
(Ten) To provide a fruit juicer with minimum parts to clean—less to maintain. In this said invention, there is only one assembly to clean—the rotary juicing device (
(Eleven) To provide an exciting and brilliant juicing/squeezing solution that will definitely impress the customers.
(Twelve) To provide a variable motor speed rotation (
(Thirteen) To provide a one-time or permanent device (
(Fourteen) To provide a fruit juicer that don't need any significant human physical forces for executing the penetrating, the juicing or the squeezing or the mixing processes.
(Fifteen) To provide the juicer structure of this novel Fruit Juicer that is electrically rotating operated, that works with multi juicing member sub-unit (
(Sixteen) To provide the best solution for obtaining minimum juice remainders outside the fruit, during the juicing/extracting/squeezing processes and the usage.
(Seventeen) To provide a convenient and affordable state-of-the-art technologies that will dramatically transform the personal usage/habits of juicing/squeezing natural, fresh and clean fruit juices.
(Eighteen) To provide a fruit juicer that is fast in juicing for suitable fruits like citrus fruits such as orange, red/white grapefruit, red orange, pomelo, red pomelo, mandarin, Clementine, lemon etc, or other fruits like melon, watermelon, pineapple, Chinese persimmon etc, until they become juice with or without pulp for drinking.
(Nineteen) To provide an effective way to ingest liquid natural fruits beverages with a lot of fresh vitamins especially like vitamin C, instead of getting “them” by pills, mixing powders, gel, fruits nectars or light fruits drinks. People that have mainly physical problems are swallowing tablets. Tablets are not liquids; their powdered ingredients are pressed in 10,000-20,000 psi (pounds). Using high pressures and increased temperatures, allow the chemical binders to cement the tablets into solid form. Tablets take time to break apart, dissolve and then release their active ingredients. Powders are bulky, are not convenient, require a measuring cup, and require liquids and a mixing container. They are messy.
(Twenty) To provide a family of products and their sub-assemblies (
(Twenty-one) To provide a new single filter straw (
(Twenty-two) To provide a new multi filter straw (
(Twenty-three) To provide the best solution for storing unfinished, available, squeezed and natural fruit juices inside the fruits, in indoors appliances such as refrigerators, or in outdoors. For this purpose a cork (
(Twenty-four) To provide a vast model selection (
(Twenty-five) To provide a fruit juicer that is powered by external source of electricity (
(Twenty-six) To provide the best solution, that will become the most popular personal motor driven Fruit Juicer.
The above as well as other goals of the present invention will become apparent when reading the accompanying description and drawings in which:
The main part of the present invention consists on a device (
The fruit juicer comprising mainly from a controlled motor (
The Fruit Juicer includes the following at least four main units: (1) The Rotary Juicing Device Unit (RJD) (
These at least four main units includes the following at least seven sub-units:
At least two physically separated main units are quickly connected or taken apart via/by the third unit which is the mechanical interface unit, to enable the juicing process: (1) The rotary juicing device unit. (2) The control & drive unit.
The Control & Drive Unit (CDU) (
The fruit juicer may also comprise of other electronic peripheral parts like at least the control selector (switch with at least four positions) (
This model (only for example) of the fruit juicer is preferably cover in its upper part with a preferable transparent plastic cover (
The rotary juicing device (
The rotary juicing device coupled to the motor (
The rotary juicing device includes a mixing rod (
The mixing rod (
The mixing rod is a rotating straight slender stick (rod) that preferably made of non-toxic stiff and plastic rod from any color, or from a rust-proof metal rod or from a stainless steel rod, or from a wooden rod (at least like the chopsticks wood or any similar wood). It can also be made of any other material(s) that approved/certified/confirmed by the qualified authorities.
The mixing rod width shape is preferably circular or triangle or rectangular or square or any other existing shape (
The at least one juicing member is flexible and pliable.
The definition—One juicing member, in this present invention relates to/defines: (1) One of the elements (
To be more accurate, The rotary juicing device is an elongated assembly that has at least one juicing member that preferably made of flexible nylon line(s)/cord(s), or from flexible rust-proof metal wire(s) or from stainless spring(s) steel or from any other material that have equal or better qualities that approved/certified/confirmed by the qualified authorities. It's replacing a conventional blade.
The rotary juicing device includes also a limiter (
The limiter sub-unit is preferably a variable mechanism, that preferably biased on a screw-thread, which set manually by the user to the right value, for avoiding any damage to the suitable fruit peels, so it eliminates any juice leakage(s). Any other existing solutions from any kind for this purpose like electronic or optical sensors can also be counted.
The limiter/bumper is preferably made of plastic, or at least from rust-proof metal, or from stainless steel, or from rubber, or from cardboard or from any other material that have equal or better qualities that approved/certified/confirmed by the qualified authorities.
The limiter is preferably a fixed sub-unit that connected constantly to the mechanical interface unit (
The rotary juicing device unit adapted for attachment to the control & drive unit (
The rotary juicing device assembly and its components are totally electrically insulated from the control & drive unit (CDU).
The definition of—juicing members, in this present invention relates to/defines: (1) At least two of the parts (for example—
The juicing members in the multi juicing member sub-unit (
To juice/extract/squeeze juice with the fruit juicer, the user preferably remove the fruit protuberance (
The juicing members are fixed at different elevations on the mixing rod with respect to each other (
Each juicing member (“branch”) (
It is recommended to manufacture the mixing rod and the multi juicing member sub-units together as one piece, in one accurate casting.
Each juicing member (
The abovementioned characteristics, plus: (1) the type of the rotary juicing device (thin, thick, coarse, etc); (2) the shape of rotary juicing device (triangle, spherical, ellipse, etc); (3) the number of the active layers; (4) the rotation mode (CW, Variable, Programmed); (5) the rotation speed of the mixing rod; (6) the angle (
Each juicing member, can be place/fix in any practical and possible angle relatively to the mixing rod (
The mechanical interface unit (MIU) coupled the rotary juicing device to the controlled motor.
This unit already exists in different versions and types of electrically fruit juicers—so, it is not counted as a part of the fruit juicer, but its use by the fruit juicer is recommended.
This unit includes all the electronic control circuits with their I/O components and the electric motor (
The control & drive unit (
In order to operate the fruit juicer, the control & drive unit is divided into the following functional sub-units (
(One) Motor.
The controlled motor providing a source of rotary motion that is rotate clockwise or counter-clockwise according to the user selection when commanded to operate. The rotary juicing device is being rotated by the operation of the motor to produce juice that remains in an/the interior of the suitable fruit. The motor can work in open-loop or closed-loop modes.
(Two) Control.
The control sub-unit received from one side the input signals from the power supply sub-unit and the I/O components sub-unit, and from the other side it sends the output signals to the controlled motor. It updates the Light Emitting Diodes status, and enables the motor to work in open-loop or closed-loop modes. There is an option to upgrade the control sub-unit to an advance control sub-unit that has the capabilities to communicate with a host computer for processing, acceleration, deceleration, upgrading different motion control parameters and work-programs for the motor by down loading them from computer networks/internet to CMOS IC's that have low current consumption, wide voltage range and low noise (PROM, E2PROM, non-volatile RAM, etc), or for OFF LINE programming.
(Three) Power Supply.
The power supply sub-unit switches between the external DC power source that come from an outer transformer that reduce the AC line voltage to a low DC voltage and the rechargeable battery option.
(Four) Rechargeable Battery (OPT.).
(Five) External Power Source (EPS).
The fruit juicer is powered by external source of electricity (
The preferred operational conditions are:
(Six) I/O Components.
The fruit juicer may also comprise of other electronic peripheral parts like at least the control selector (switch with at least four positions) (
When the juice is ready inside the suitable fruit, the rotary juicing device being retrieved out of the interior of the fruit to allow introduction therein of a straw for retrieving the juice out of the fruit, filtered or not. Actually, the entire fruit peel apricot as a drinking cup.
A straw is a long tube, made of paper, plastic, glass or any other delegated material, for sucking up a beverage.
There are three preferable straws in the present invention: (1) the single filter straw (
The single filter straw (
The multi filter straw (
The inner filter straw, is built/drilled/shaped or cast inside the mixing rod, from its top till almost its bottom. In this case the mixing rod becomes exactly like the single filter straw that constructed outside as the rotary juicing device, and from its inner side, its as a passing hole not exactly till its end, to enable the juice flow, to go out. In order to use this inner filter straw, the user need to finish the extracting process, then the user instantly can use the straw. This inner straw can be made also from two parts: (1) the single filter straw inside the mixing rod; (2) plus another inner straw inside the single filter straw, with sealed walls, that during the extracting process is inside the single filter straw. When the extracting process finished, the user pull it up, and drink the desired juice.
The rotary juicing device includes a means for coupling the rotatable head (RH) (
The narrow sealed rotary juicing device (
The rotary juicing device based on a juicing member (
To avoid any damage to the inner fruit peel during the juicing/squeezing/mixing processes, a preferable plastic limiter (
The juicing member (
The rotary juicing device assembly and its components are totally electrically insulated from the control & drive unit (CDU).
The juicing member is using preferably a flexible nylon line/cord, or flexible rust-proof metal wire or stainless spring steel wire as a blade, instead of a conventional blade with or without an end piece. Any other suggested line/cord/wire from any other material(s) must have at least equal or better qualities that approved/certified/confirmed by the qualified authorities.
The juicing member, works as a high speed-rotating whip with a random direction movement, to most of the sides. During its movement, the “whip” bent and twists randomly to crush grind and to generate natural juice and blend/puree under the fruit peel, when the flexible nylon string is rotated by the controlled motor sub-unit.
The juicing member is attached (by cast connection, for example) in its upper end to a rotatable head (RH) (
The tip (
The juicing member rotates around a vertical axis, that centered on a hole (
The outer edge (
According to the type of a said fruit, the user select respectively the proper type of the rotary juicing device, small or medium or large size. Mediums rotary juicing device have a medium length of plastic pipe and juicing member that fits for the orange or grapefruit, for example. A large rotary juicing device, have a large length of plastic pipe and line mixer segment that fits for the melon and watermelon, for example. These selections define the suitable solutions.
The user pick and hold the specific fruit that he wants.
The user connect physically the suitable rotary juicing device (RJD) to the mechanical interface (MIU) of the fruit juicer.
The user adjusts the limiter location accordingly to the fruit type and size.
The user enters the multi juicing member sub-unit (all its size) with all its flexible juicing members and their components (end devices, edge units, etc), slowly into the interior of the said fruit vertically, preferably through the protuberance hole, without any rotation.
When done, the user operate the motor, that rotate the rotary juicing device unit.
The user grasp the fruit in one hand and with his second one he bends the mixing rod slowly and randomly inside the fruit, several seconds, to different sides directions and angles to achieve the best juicing results.
The juicing members perform juicing , extracting, mixing, squeezing, cutting & crushing that producing juice, that remains in the interior of the fruit.
The user stops the motor movement.
If the user is using a rotary juicing device with an inner filter straw inside the mixing rod, he can immediately, start to drink, from the fruit through the rod with this unique straw.
If the user is not using a rotary juicing device with an inner filter straw inside, then he retrieve out from the interior of the fruit the rotary juicing device, slowly.
The user enters the cork & straw interface (CSI) into the hole that the rotary juicing device produced before.
The user enters a regular straw through the cork & straw interface for retrieving juice out of the fruit, but it is preferable to use the straws of the present invention.
The user finish to drink the juice from the fruit.
When done, the user retrieve out the used straw.
If the user wants another fruit from the same type, to continue the process, jump to paragraph [0120].
If the user don't wants another new fruit from the same type, and don't wants another new fruit from a different type, and don't wants to clean the current straw for returning use, then he should throw the fruit plus the current straw together straight to the garbage. In such a case, this is the end of the process.
If the user wants another new fruit from a different type, he should physically retrieve out the rotary juicing device from the mechanical interface (MIU) of the fruit juicer and to clean and keep/store it. When done, to continue the process, jump to paragraph [0117].
If the user wants to clean the current straw for returning use, then he should clean and store it. In such a case, this is the end of the process, also.
Note:
If a user is willing to get out-side the inner fruit juice, after or during the extraction process, all he needs to do is just to make a hole in the bottom of the fruit, using the rotary juicing device tip, and so he'll be abele to fill a glass, for example.
Number | Date | Country | Kind |
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179806 | Dec 2006 | IL | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IL2007/001491 | 12/4/2007 | WO | 00 | 5/19/2009 |