AUTOMATED, COMPUTER-CONTROLLED, COOKING SYSTEM AND METHOD
20200054166 ยท 2020-02-20
Assignee
Inventors
Cpc classification
A47J36/321
HUMAN NECESSITIES
A47J36/165
HUMAN NECESSITIES
A47J27/024
HUMAN NECESSITIES
International classification
A47J36/32
HUMAN NECESSITIES
A47J27/024
HUMAN NECESSITIES
Abstract
An automated, computer-controlled, cooking system for use with user selectable ones of a plurality of different pre-sealed computerized cooking containers containing dry contents (PSCCCCDC) useful in preparing corresponding different food products, the system including a microwave heater, a PSCCCCDC support for supporting a user-selected one of the plurality of different PSCCCCDCs during cooking, a computer-controlled liquid supply subsystem for supplying liquid to the user selected one of the plurality of different PSCCCCDCs, a computer-controlled stirrer subsystem for producing stirring of the dry contents of the PSCCCCDC together with the liquid and a computer controller operative to control operation of at least the computer-controlled liquid supply subsystem, the computer-controlled stirrer subsystem and the microwave heater in a predetermined sequence corresponding to and specifically adapted for cooking the contents of the user-selected one of the plurality of different PSCCCCDCs.
Claims
1. An automated, computer-controlled, cooking system for use with user selectable ones of a plurality of different pre-sealed computerized cooking containers containing dry contents (PSCCCCDC) useful in preparing corresponding different food products, the system comprising: a microwave heater; a PSCCCCDC support for supporting a user-selected one of said plurality of different PSCCCCDCs during cooking; a computer-controlled liquid supply subsystem for supplying liquid to said user selected one of said plurality of different PSCCCCDCs; a computer-controlled stirrer subsystem for producing stirring of said dry contents of said PSCCCCDC together with said liquid; and a computer controller operative to control operation of at least said computer-controlled liquid supply subsystem, said computer-controlled stirrer subsystem and said microwave heater in a predetermined sequence corresponding to and specifically adapted for cooking the contents of said user-selected one of said plurality of different PSCCCCDCs.
2. An automated, computer-controlled, cooking system according to claim 1 and wherein said predetermined sequence defines a computer implementable cooking protocol which comprises a sequence of cooking sub-protocols each of which defines at least one parameter relating to operation of said microwave heater and at least one of a parameter relating to operation of said computer-controlled liquid supply subsystem and at least one parameter relating to operation of said computer-controlled stirrer subsystem.
3. An automated, computer-controlled, cooking system according to claim 1 and wherein said predetermined sequence defines a computer implementable cooking protocol which comprises a sequence of cooking sub-protocols each of which defines at least one parameter relating to operation of said microwave heater and at least one parameter relating to operation of said computer-controlled liquid supply subsystem.
4. An automated, computer-controlled, cooking system according to claim 1 and wherein said predetermined sequence defines a computer implementable cooking protocol which comprises a sequence of cooking sub-protocols each of which defines at least one parameter relating to operation of said microwave heater and at least one parameter relating to operation of said computer-controlled stirrer subsystem.
5. An automated, computer-controlled, cooking system according to claim 1 and wherein said predetermined sequence defines a computer implementable cooking protocol which comprises a sequence of cooking sub-protocols each of which defines at least one parameter relating to operation of said microwave heater, at least one parameter relating to operation of said computer-controlled liquid supply subsystem and at least one parameter relating to operation of said computer-controlled stirrer subsystem.
6. An automated, computer-controlled, cooking system according to claim 1 and wherein said computer-controlled liquid supply subsystem for supplying liquid to said user selected one of said plurality of different PSCCCCDCs comprises a first water pump for pumping cold water and at least one second water pump for pumping heated water.
7. An automated, computer-controlled, cooking system according to claim 1 and wherein said computer-controlled liquid supply subsystem for supplying liquid to said user selected one of said plurality of different PSCCCCDCs comprises a heated water and/or steam generator.
8. An automated, computer-controlled, cooking system according to claim 1 and wherein said computer-controlled stirrer subsystem for producing stirring of said dry contents of said PSCCCCDC together with said liquid is operative to effect stirring of contents of said user selected PSCCCCDC only by moving said PSCCCCDC.
9. An automated, computer-controlled, cooking system according to claim 1 and wherein said computer-controlled stirrer subsystem for producing stirring of said dry contents of said PSCCCCDC together with said liquid includes a rotary drive motor and a linkage which are together operative to displace said PSCCCCDC support in reciprocal motion.
10. An automated, computer-controlled, cooking system according to claim 1 and wherein said computer-controlled stirrer subsystem for producing stirring of said dry contents of said PSCCCCDC together with said liquid includes a PSCCCCDC rotator which is operative to displace said PSCCCCDC in rotational motion relative to said PSCCCCDC support.
11. An automated, computer-controlled, cooking system for use with user selectable ones of a plurality of different pre-sealed computerized cooking containers containing dry contents (PSCCCCDCs) useful in preparing corresponding different food products, the system comprising: a microwave heater; and a PSCCCCDC support for supporting a user selected one of said plurality of different PSCCCCDCs during cooking and including a passive, microwave heatable portion, which is positioned for conduction heating of said PSCCCCDC.
12. An automated, computer-controlled, cooking system according to claim 11 and wherein said passive, microwave heatable portion comprises a layer of silicon carbide.
13. An automated, computer-controlled, cooking system according to claim 11 and also comprising a computer-controlled liquid supply subsystem for supplying heated liquid to said user selected one of said plurality of different PSCCCCDCs.
14. An automated, computer-controlled, cooking system according to claim 11 and also comprising a computer-controlled stirrer subsystem for producing stirring of said dry contents of said PSCCCCDC together with said liquid by moving said PSCCCCDC support.
15. An automated, computer-controlled, cooking system according to claim 11 and also comprising a computer controller operative to control operation of at least said microwave heater in a predetermined sequence corresponding to and specifically adapted for cooking the contents of said user-selected one of said plurality of different PSCCCCDCs.
16. An automated, computer-controlled, cooking system for use with user selectable ones of a plurality of different pre-sealed computerized cooking containers containing dry contents (PSCCCCDC) useful in preparing corresponding different food products, according to claim 1 and wherein said PSCCCCDC support comprises a passive, microwave heatable portion, which is positioned for conduction heating of said PSCCCCDC.
17. An automated, computer-controlled, cooking system according to claim 16 and wherein said passive, microwave heatable portion comprises a layer of silicon carbide.
18. An automated, computer-controlled, cooking system according to claim 16 and also comprising a computer-controlled liquid supply subsystem for supplying heated liquid to said user selected one of said plurality of different PSCCCCDCs.
19. An automated, computer-controlled, cooking system according to claim 16 and also comprising a computer-controlled stirrer subsystem for producing stirring of said dry contents of said PSCCCCDC together with said liquid by moving said PSCCCCDC support.
20. An automated, computer-controlled, cooking system according to claim 11 and also comprising a computer controller operative to control operation of at least said microwave heater in a predetermined sequence corresponding to and specifically adapted for cooking the contents of said user-selected one of said plurality of different pre-sealed PSCCCCDCs.
21-209. (canceled)
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0451] The present invention will be understood and appreciated more fully from the following detailed description, taken in conjunction with the drawings in which:
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DETAILED DESCRIPTION OF A PREFERRED EMBODIMENT
[0477] Reference is now made to
[0478] As seen in
[0479] The front portion 108 of the main housing 102 preferably is formed with an aperture 118, which is normally closed by a food cooking PSCCCCDC access door 119 having a handle 120. Disposed rearwardly of rear portion 110 is a microwave radiation protected enclosure 121 including a metal plate 122. Enclosure 121 is normally covered with a rear enclosure element 123, having an array of apertures, and encloses a main circuit board (not shown) and a cellular communication board (not shown). Rear portion 110 is preferably also formed with at least two, and preferably at least four, apertures 124 which accommodate respective liquid supply tubes 125 and 126, preferably connected to at least one liquid storage container 127, such as a water storage container. Additional liquid storage containers 128 may also be provided and may include storage containers for liquid ingredients, such as olive oil, wine, spirits, soy sauce or any other liquid ingredient required in a computerized cooking recipe, or a liquid ingredient that a user may wish to have added during cooking. Such additional storage containers may be coupled to the system via suitable liquid supply tubes (not shown). A bar code reader 129 is preferably also provided and may be connected to main circuit board (not shown) wirelessly or by a data cable 130.
[0480] There are also preferably provided a pair of forward side panels 132 and a pair of rearward side panels 134, each of rearward side panels 134 having formed thereon an array 136 of communication apertures. Panels 132 and 134 are preferably removably mounted onto main housing 102, as by screws (not shown).
[0481] Located within main housing 102 are first, second and third chassis elements 152, 154 and 156, which are described hereinbelow in greater detail with respect to
[0482] In accordance with a preferred embodiment of the present invention, a microwave cooking chamber 160 is defined within main housing 102. Microwave cooking chamber 160 is described hereinbelow in detail with reference to
[0483] It is a particular feature of the microwave cooking chamber that its dimensions are unusually small, preferably having a width of 161.5 mm, a height of 145 mm and a depth of 123.5 mm.
[0484] Additionally located within main housing 102 is a microwave energy generating assembly 180 including a power supply 182, a magnetron 184, such as a PANASONIC INVERTER MICROWAVE OVEN MAGNATRON 2M261-M39 641W, surrounded by a radiation protective mesh 185 and a fan 186 for directing a cooling air flow from outside main housing 102, via array 112 of communication apertures formed in top portion 104 of main housing 102, downwardly through the magnetron 184 and downstream thereof along a ventilation path defining element 188 and out via an array 136 of communication apertures formed in a back side panel 134 at the left of the main housing 102 in the sense of
[0485] Further disposed within main housing 102, for operative engagement with microwave cooking chamber 160, is a pre-sealed computerized cooking container containing dry contents (PSCCCCDC) insertion, locking, stirring and serving subsystem 190, which is described hereinbelow in detail with respect to
[0486] PSCCCCDC insertion, locking, stirring and serving subsystem 190 is arranged for linear displacement into and partially out of the microwave cooking chamber 160 along a rail 198, which is fixedly mounted onto chassis element 164 and has a low friction spacer 199 mounted thereon.
[0487] Also disposed within main housing 102 is a computer-controlled fluid supply subsystem 200 which is described hereinbelow in detail hereinbelow with reference to
[0488] Reference is now made to
[0489] Reference is now made to
[0490] Reference is now made to
[0491] Reference is now made to
[0492] As seen in
[0493] A floor of microwave cooking chamber 160 is defined by chassis element 164, which is illustrated in
[0494] A back wall of microwave cooking chamber 160 is defined by chassis element 166, which is illustrated in
[0495] A forward wall of microwave cooking chamber 160 is defined by chassis element 168, illustrated in
[0496] Rectangular aperture 310 of chassis element 166 communicates with the interior of chassis element 170, illustrated in
[0497] As seen in
[0498] Reference is now made to
[0499] Cup 334 is typically heat sealed along a rim thereof with a sealing layer 336 preferably made of polypropylene. Preferably a conventional removable plastic cup lid 337, preferably formed of polypropylene, is formed with a precut flap incision 338, and is sealed over incision 338 with an outer seal 339, preferably formed of polypropylene. The dried contents of the PSCCCCDC 333 are selected to correspond to a predetermined, pre-engineered food product, examples of which are described hereinabove with reference to
[0500] Reference is now made to
[0501] Cup 342 is typically heat sealed along a rim thereof with a sealing layer 344, preferably made of polypropylene. Preferably, a removable plastic cup lid 345, preferably formed of polypropylene, is formed with an extendible, accordion-like apertured central portion 346, and is sealed over extendible, accordion-like apertured central portion 346 with an outer seal 347, preferably formed of polypropylene. The dried contents of the PSCCCCDC 341 are selected to correspond to a predetermined, pre-engineered food product, examples of which are described hereinabove with reference to
[0502] Reference is now made to
[0503] As seen with particular clarity in
[0504] Preferably, manually linearly displaceable element 352 is mounted onto track riding element 350 by screws (not shown) engaging apertures 360 formed in elongate portion 354 forward of and adjacent to upstanding rear portion 356. A low friction spacer 362 is also preferably mounted onto elongate portion 354.
[0505] A generally elongate planar element 370 is pivotably mounted onto manually linearly displaceable element 352. Element 370 is preferably formed with an aperture 380 in which is fixedly mounted a bearing 382, which rotatably supports a threaded shaft 384. Threaded shaft 384 preferably extends through a plurality of spacer washers 385, an aperture 386 in a motor mounting bracket 387, a spacer 388, bearing 382 fixed in aperture 380 and a spacer 389 and threadably engages a correspondingly threaded aperture 390 in manually linearly displaceable element 352.
[0506] Motor mounting bracket 387 is preferably formed with an aperture 391 in which is fixedly mounted an axle 392 onto which is rotatably mounted a ratcheted friction engagement wheel 396, which is enabled for rotation only in a counterclockwise direction in the sense of
[0507] Preferably, motor mounting bracket 387 is also formed with a forward upstanding portion 397, an elongate portion 398 and a rearward upstanding portion 399. Preferably, forward upstanding portion 397 of motor mounting bracket 387 and upstanding front portion 358 of manually linearly displaceable element 352 serve as microwave radiation shields.
[0508] Generally elongate planar element 370 is also formed with a longitudinal slot 400 formed at one end thereof and preferably is formed with a typically generally triangular cut out 402 at an opposite end thereof, as well as a plurality of mounting apertures 404 adjacent triangular cut out 402. Cut out 402 is preferably provided for enabling passage of microwave energy therethrough.
[0509] An electric stepper motor 406, preferably a Model DB37-528, commercially available from Hong Kong Dong Hui Motor Industrial, is fixedly mounted on motor mounting bracket 387 and includes a rotatable drive shaft 407, which extends through an aperture 408 in mounting bracket 387.
[0510] An eccentric coupler 410 slidably engages slot 400 and includes a pin portion 412 and an aperture 414 which tightly receives rotatable drive shaft 407 of motor 406. Aperture 414 is selectably engaged by a set screw 416 for providing tight engagement between drive shaft 407 and coupler 410, such that coupler 410 rotates together with drive shaft 407.
[0511] A PSCCCCDC engagement assembly 420 also forms part of PSCCCCDC insertion, locking, stirring and serving subsystem 190 and preferably includes a PSCCCCDC holding element 422 including a bottom wall portion 424, which is attached to generally elongate planar element 370 by screws (not shown) engaging apertures 404. PSCCCCDC holding element 422 also includes a generally circular circumferential wall portion 426 having a bracket recess 428 and a cut out 430 for enabling wheel 396 to extend therethrough. It is a particular feature of an embodiment of the present invention that PSCCCCDC holding element 422 and most preferably generally circular circumferential wall portion 426 thereof is formed of a material, such as silicon carbide, which is readily heatable by microwave radiation, thereby enabling heating of the contents of the PSCCCCDC not only by microwave energy and hot water but also by conduction and convection from PSCCCCDC holding element 422, which serves as a heat source as well.
[0512] A PSCCCCDC engagement arm 438 is pivotably mounted onto PSCCCCDC holding element 422 by means of a bracket 439 which seats in bracket recess 428. Bracket 439 defines a pivot axis 440 extending through apertures (not shown) formed at a top portion thereof, which receive a screw 441, which engages corresponding pivot recesses in arm 438. Arm 438 includes a fluid channel 442, which is coupled to a fluid inlet connector 443 and a barbed fluid outlet nozzle 444.
[0513] It is a particular feature of an embodiment of the present invention that operation of motor 406 driving eccentric coupler 410 which engages slot 400 in generally elongate planar element 370 produces reciprocal pivoting movement of generally elongate planar element 370 and thus of PSCCCCDC holding element 422, which is fixedly mounted thereon. This reciprocal pivoting movement is operative to provide external stirring of contents of a PSCCCCDC (not shown), without contact with the contents of the PSCCCCDC, thus obviating the need to clean elements of the system between cooking operations.
[0514] It is a further particular feature of an embodiment of the present invention that the frictional engagement of ratcheted friction engagement wheel 396, which moves in a direction indicated by an arrow 450, with an outer surface of a PSCCCCDC (not shown) held in PSCCCCDC holding element 422 produces rotation of the PSCCCCDC 333 within PSCCCCDC holding element 422, thus providing additional external driven stirring of the contents of the PSCCCCDC.
[0515] Reference is now made to
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[0518] Reference is now made to
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[0521] Reference is now made to
[0522] It is a particular feature of an embodiment of the present invention that, as seen in
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[0524] Reference is now made to
[0525] Reference is now made to
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[0527] Reference is now made to
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[0529] Reference is now made to
[0530] As seen in
[0531] Liquid supply tube 125 supplies water to hot water pump 206 (
[0532] Liquid supply tube 126 supplies water to cold water pump 202 (
[0533] Air pump 210 (
[0534] It is a particular feature of the present invention that, as will be described hereinbelow in detail with reference to
[0535] Reference is now made to
[0536] An additional CPU 602 preferably is in bi-directional data communication with CPU 600 and with buttons 114 and 116 and bar-code scanner 129 as well as a Bluetooth communicator 604, which may be used for communicating with user devices, a speaker 606, a memory 608, which preferably stores at least computerized cooking recipes, and a WIFI communicator 610, which may be used for communicating with user devices.
[0537] A further CPU 612 preferably is in bi-directional data communication with a cellular communications module 614 and preferably provides a network connection as described hereinbelow with reference to
[0538] It is a particular feature of an embodiment of the present invention that each PSCCCCDC 333 carries a unique bar code, which is not duplicated on any other PSCCCCDC 333. This enables the purchase and use of each PSCCCCDC 333 to be individually tracked.
[0539] Reference is now made to
[0540] The network preferably enables new and modified recipes to be distributed to the various computer-controlled cooking systems 800 by cloud server 802 and to be shared among the various computer-controlled cooking systems 800. Users may also use the network to input various user inputs to the various computer-controlled cooking systems 800 by means of applications which reside on conventional mobile devices, such as smartphones. Alternatively, user input for modifying or selecting computer controlled cooking may be input to various computer-controlled cooking systems 800 via bar codes which may be user generated and read by bar code readers 129.
[0541] The network preferably enables tracking of purchase and use of specific PSCCCCDCs 333 and 341 to be tracked by the cloud server, in order to ensure that sufficient supplies of specific types of PSCCCCDCs 333 and 341 are made available to consumers. Preferably, cooking/dispensing of each PSCCCCDC 333 and 341 is reported automatically by each of the various computer-controlled cooking systems 800 to the cloud server 802 so that trends in usage of specific types of PSCCCCDCs 333 and 341 can be analyzed and predicted and quality control functionality may be provided. Accordingly, difficulties in usage of computer-controlled cooking systems 800 can also be automatically monitored, tracked and corrected.
[0542] The network also enables consumption and calorie content of cooked PSCCCCDCs 333 and 341 to be monitored for each computer-controlled cooking system 800. The network and particularly the individual coding of each PSCCCCDC 333 and 341 enables counterfeiting of PSCCCCDCs 333 and 341 to be detected and counteracted.
[0543] Reference is now made to
[0544] It is appreciated that the schematic illustrations shown in
[0545] Ten examples of meal-specific cooking protocols will now be set forth, each representing a predetermined sequence of computerized cooking operation stages corresponding to and specifically adapted for computerized cooking of the contents of a specific user-selected one of said plurality of different pre-sealed containers corresponding to a specific meal. The illustrations indicated in parentheses next to each numbered sub-protocol symbolically illustrate the actions occurring at each stage. It is noted that the protocols refer to supply of liquid in terms of duration of operation of pumps. In the examples which follow, the flow rate of liquid supply is typically 8 grams of water per second of pump operation.
[0546] Each of the following examples preferably employs a meal-specific pre-sealed container containing dry contents (PSCCCCDC), which contents are specifically selected and prepared for use in the specific meal which is the subject of each example. Recipes for preparation of the meal-specific PSCCCCDC used in each example are set forth at the end of each example.
EXAMPLE 1QUICK COOKING MACARONI AND CHEESE
[0547] COOKING OPERATION SEQUENCE:
[0548] 1. (
[0549] OPERATE HOT WATER PUMP 206 FOR 3 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0550] 2. (
[0551] 3. (
[0552] OPERATE HOT WATER PUMP 206 FOR 3 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0553] 4. (
[0554] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0555] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0556] OPERATE FANS 186 and 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0557] 5. (
[0558] 6. (
[0559] 7 (
[0560] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0561] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0562] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0563] 8. (
[0564] 9. (
[0565] OPERATE HOT WATER PUMP 206 FOR 1 CYCLE OF 3 SECONDS DURATION, FOLLOWED BY A REST PERIOD OF 0.5 SECOND.
[0566] 10. (
[0567] 11. (
[0568] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0569] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0570] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0571] 12. (
[0572] 13. (
[0573] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0574] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES,
[0575] EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0576] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0577] 14. (
[0578] 15. (
[0579] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0580] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0581] 16. (
[0582] 17. (
[0583] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0584] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0585] 18. (
[0586] 19. (
[0587] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0588] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0589] 20. (
[0590] 21. (
[0591] 22. (
[0592] RECIPE: QUICK COOKING MACARONI & CHEESE
[0593] DRY INGREDIENTS
TABLE-US-00011 GRAMS ITEMS 56 FREEZE DRIED QUICK COOKING MACARONI 17 FREEZE DRIED MILK POWDER 12 FREEZE DRIED CHEDDAR CHEESE 9 FREEZE DRIED PARMESAN CHEESE 9 FREEZE DRIED MOZZARELLA CHEESE 9 AIR DRIED PRE-COOKED COATED SEASONED ONIONS 6 FREEZE DRIED SOUR CREAM POWDER 3 TOASTED BREAD CRUMBS 1.3 SALT 0.4 GROUND NUTMEG 0.3 GROUND BLACK PEPPER
[0594] 220 GRAMS OF WATER ARE SUBSEQUENTLY ADDED DURING COOKING
EXAMPLE 2SCRAMBLED EGGS WITH VEGETABLES
[0595] COOKING OPERATION SEQUENCE:
[0596] 1. (
[0597] OPERATE STIRRING MOTOR 406 DURING THE ENTIRE PERIOD OF OPERATION OF COLD WATER PUMP 202.
[0598] 2. (
[0599] OPERATE HOT WATER PUMP 206 FOR 6 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0600] OPERATE MICROWAVE ENERGY GENERATING ASSEMBLY 180 DURING THE ENTIRE DURATION OF OPERATION OF HOT WATER PUMP 206.
[0601] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0602] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0603] 3. (
[0604] 4. (
[0605] ALSO OPERATE STIRRING MOTOR 406 AS FOLLOWS:
[0606] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0607] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0608] 5. (
[0609] 6. (
[0610] ALSO OPERATE STIRRING MOTOR 406 AS FOLLOWS:
[0611] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0612] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0613] 7. (
[0614] 8. (
[0615] RECIPE: SCRAMBLED EGGS WITH VEGETABLES
[0616] DRY INGREDIENTS:
TABLE-US-00012 GRAMS ITEMS 26 FREEZE DRIED EGG POWDER 10 FREEZE DRIED DICED TOMATOES 6 FREEZE DRIED PUREED TOMATO PASTE 4 FREEZE DRIED DICED WHITE ONIONS 3.5 FREEZE DRIED DICED RED PEPPERS 1.6 SALT 0.5 FREEZE DRIED PARSLEY FLAKES 0.5 WHITE SUGAR 0.2 GROUND CHILI PEPPER 0.1 FREEZE DRIED OREGANO
[0617] 165 GRAMS OF WATER ARE SUBSEQUENTLY ADDED DURING COOKING.
[0618] 20 GRAMS OF OLIVE OIL ARE SUBSEQUENTLY ADDED DURING COOKING.
EXAMPLE 3LENTIL STEW
[0619] COOKING OPERATION SEQUENCE:
[0620] 1. (
[0621] OPERATE HOT WATER PUMP 206 FOR 3 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0622] 2. STAND BY FOR 3 SECONDS.
[0623] 3. (
[0624] OPERATE HOT WATER PUMP 206 FOR 3 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0625] OPERATE STIRRING MOTOR 406 DURING THE ENTIRE PERIOD OF OPERATION OF HOT WATER PUMP.
[0626] 4. (
[0627] OPERATE HOT WATER PUMP 206 FOR 1 CYCLE OF 3 SECONDS DURATION, FOLLOWED BY A REST PERIOD OF 0.5 SECOND.
[0628] 5. (
[0629] 6. (
[0630] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0631] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0632] 7. STAND BY FOR 5 SECONDS.
[0633] 8. (
[0634] OPERATE HOT WATER PUMP 206 FOR 3 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0635] OPERATE STIRRING MOTOR 406 DURING THE ENTIRE PERIOD OF OPERATION OF HOT WATER PUMP.
[0636] 9. (
[0637] OPERATE HOT WATER PUMP 206 FOR 1 CYCLE OF 3 SECONDS DURATION, FOLLOWED BY A REST PERIOD OF 0.5 SECONDS.
[0638] 10. (
[0639] 11. (
[0640] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECONDS FOLLOWED BY A REST PERIOD OF 0.2 SECONDS FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0641] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0642] 12. (
[0643] 13. STAND BY FOR 6 SECONDS.
[0644] 14. (
[0645] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0646] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0647] 15. STAND BY FOR 6 SECONDS.
[0648] 16. (
[0649] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0650] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0651] 17. (
[0652] 18. (
[0653] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0654] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0655] 19. STAND BY FOR 2 SECONDS.
[0656] 20. (
[0657] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0658] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0659] 21. STAND BY FOR 2 SECONDS.
[0660] 22. (
[0661] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0662] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0663] RECIPE: LENTIL STEW
[0664] DRY INGREDIENTS:
TABLE-US-00013 GRAMS ITEMS 36 FREEZE DRIED PRE-COOKED BASMATI RICE 24 AIR DRIED PRE-COOKED COATED SEASONED ONIONS 13 SPLIT ORANGE LENTILS 8 FREEZE DRIED BLACK LENTILS. 7 FREEZE DRIED BROWN LENTILS 2 SALT 0.8 FREEZE DRIED MINCED GARLIC 0.4 GROUND CINNAMON 0.2 GROUND CUMIN 0.2 GROUND PEPPER 0.1 GROUND CURCUMIN
[0665] 220 GRAMS OF WATER ARE SUBSEQUENTLY ADDED DURING COOKING.
EXAMPLE 4OATMEAL
[0666] COOKING OPERATION SEQUENCE:
[0667] 1. (
[0668] 2. (
[0669] 3. (
[0670] 4. (
[0671] 5. (
[0672] 6. (
[0673] 7. (
[0674] 8. (
[0675] 9. (
[0676] 10. (
[0677] 11. (
[0678] OPERATE HOT WATER PUMP 206 FOR 2 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0679] OPERATE STIRRING MOTOR 406 DURING THE ENTIRE PERIOD OF OPERATION OF THE HOT WATER PUMP 206.
[0680] 12. STAND BY FOR 5 SECONDS.
[0681] 13. (
[0682] OPERATE HOT WATER PUMP 206 FOR 2 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0683] OPERATE MICROWAVE ENERGY GENERATING ASSEMBLY 180 DURING THE ENTIRE DURATION OF OPERATION OF HOT WATER PUMP 206.
[0684] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0685] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0686] 14. (
[0687] 15. (
[0688] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0689] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0690] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0691] 16. (
[0692] 17. (
[0693] 18. (
[0694] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0695] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0696] 19. (
[0697] 20. (
[0698] 21. (
[0699] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECONDS FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0700] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0701] RECIPE: OATMEAL
[0702] DRY INGREDIENTS
TABLE-US-00014 GRAMS ITEMS 40 INSTANT OATMEAL 12 DEMERARA SUGAR 9 FREEZE DRIED BANANA SLICES, 4-5 mm THICK 8 DRIED CRANBERRIES 8 FREEZE DRIED MILK POWDER 0.3 GROUND CINNAMON 0.1 GRATED VANILLA BEAN
[0703] 185 GRAMS OF WATER ARE SUBSEQUENTLY ADDED DURING COOKING.
EXAMPLE 5TOMATO SOUP
[0704] COOKING OPERATION SEQUENCE:
[0705] 1. (
[0706] OPERATE HOT WATER PUMP 206 FOR 5 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0707] OPERATE STIRRING MOTOR 406 DURING THE ENTIRE PERIOD OF OPERATION OF HOT WATER PUMP.
[0708] 2. (
[0709] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0710] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0711] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0712] 3. (
[0713] OPERATE HOT WATER PUMP 206 FOR 3 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0714] OPERATE MICROWAVE ENERGY GENERATING ASSEMBLY 180 DURING THE ENTIRE DURATION OF OPERATION OF HOT WATER PUMP 206.
[0715] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0716] 4. STAND BY FOR 5 SECONDS.
[0717] 5. (
[0718] OPERATE HOT WATER PUMP 206 FOR 5 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECONDS.
[0719] OPERATE MICROWAVE ENERGY GENERATING ASSEMBLY 180 DURING THE ENTIRE DURATION OF OPERATION OF HOT WATER PUMP.
[0720] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0721] 6. (
[0722] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0723] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0724] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0725] 7. (
[0726] 8. (
[0727] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0728] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0729] 9. (
[0730] RECIPE: TOMATO SOUP
[0731] DRY INGREDIENTS
TABLE-US-00015 GRAMS ITEMS 23 SEASONED BREAD CROUTONS 12 FREEZED DRIED PUREED TOMATOES 4.5 FREEZE DRIED TOMATO PASTE POWDER 3.5 FREEZE DRIED DICED TOMATOES 2.5 SALT 2.0 FREEZE DRIED DICED WHITE ONIONS 1.5 WHITE SUGAR 0.9 FREEZE DRIED MINCED GARLIC 0.3 FREEZE DRIED BASIL FLAKES 0.2 COARSELY GROUND BLACK PEPPER
[0732] 290 GRAMS OF WATER ARE SUBSEQUENTLY ADDED DURING COOKING.
[0733] 20 GRAMS OF OLIVE OIL ARE SUBSEQUENTLY ADDED DURING COOKING.
EXAMPLE 6CHOCOLATE MOLTEN CAKE
[0734] COOKING OPERATION SEQUENCE:
[0735] 1. (
[0736] 2. (
[0737] 3. (
[0738] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0739] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0740] 4. (
[0741] 5. (
[0742] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0743] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0744] RECIPE: CHOCOLATE MOLTEN CAKE
[0745] DRY INGREDIENTS
TABLE-US-00016 GRAMS ITEMS 28 WHITE SUGAR 11 STANDARD WHEAT FLOUR 9 FREEZE DRIED EGG POWDER 8 BITTERSWEET CHOCOLATE CHIPS 6.5 BAKING COCOA POWDER 1.5 BAKING POWDER 0.1 GRATED VANILLA BEAN
[0746] 40 GRAMS OF WATER ARE SUBSEQUENTLY ADDED DURING COOKING.
EXAMPLE 7SAVORY NOODLES
[0747] COOKING OPERATION SEQUENCE:
[0748] 1. (
[0749] OPERATE HOT WATER PUMP 206 FOR 1 CYCLE OF 3 SECONDS DURATION, WITH THE CYCLE FOLLOWED BY A REST PERIOD OF 0.5 SECOND.
[0750] OPERATE STIRRING MOTOR 406 DURING THE ENTIRE PERIOD OF OPERATION OF HOT WATER PUMP.
[0751] 2. (
[0752] OPERATE HOT WATER PUMP 206 FOR 6 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECONDS.
[0753] OPERATE MICROWAVE ENERGY GENERATING ASSEMBLY 180 DURING THE ENTIRE DURATION OF OPERATION OF HOT WATER PUMP.
[0754] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0755] 3. (
[0756] 4. (
[0757] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0758] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0759] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0760] 5. (
[0761] RECIPE: SAVORY NOODLES
[0762] DRY INGREDIENTS
TABLE-US-00017 GRAMS ITEMS 29 FREEZE DRIED NOODLES 15 FREEZE DRIED PEANUT BUTTER POWDER 12 FREEZE DRIED COCONUT MILK POWDER 11 DICED ROASTED PEANUTS 4 FREEZE DRIED CORN KERNELS 4 FREEZE DRIED SOY POWDER 3 FREEZE DRIED SLICED WHITE BUTTON MUSHROOMS 3 FREEZE DRIED GARDEN PEAS 3 FREEZE DRIED DICED CARROTS 1.5 FREEZE DRIED MINCED GREEN ONIONS 0.8 FREEZE DRIED GRATED GINGER 0.7 FREEZE DRIED MINCED GARLIC 0.2 FREEZE DRIED CHOPPED CORIANDER LEAF FLAKES 0.2 FREEZE DRIED GRATED LEMON PEEL 0.2 FREEZE DRIED CHOPPED BASIL
[0763] 170 GRAMS OF WATER ARE SUBSEQUENTLY ADDED DURING COOKING.
EXAMPLE 8RED QUINOA
[0764] COOKING OPERATION SEQUENCE
[0765] 1. (
[0766] OPERATE HOT WATER PUMP 206 FOR 2 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0767] OPERATE STIRRING MOTOR 406 DURING THE ENTIRE PERIOD OF OPERATION OF HOT WATER PUMP.
[0768] 2. (
[0769] OPERATE HOT WATER PUMP 206 FOR 6 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0770] OPERATE MICROWAVE ENERGY GENERATING ASSEMBLY 180 DURING THE ENTIRE DURATION OF OPERATION OF HOT WATER PUMP 206.
[0771] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0772] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0773] 3. (
[0774] 4. (
[0775] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0776] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0777] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0778] 5. (
[0779] 6. (
[0780] RECIPE: RED QUINOA
[0781] DRY INGREDIENTS
TABLE-US-00018 GRAMS ITEMS 27 RED QUINOA 10 ROASTED UNPEELED SMALL WHOLE ALMONDS 7 FREEZE DRIED WASABI COATED PEAS 7 FREEZE DRIED FIRM TOFU CUBES 4 FREEZE DRIED SOY POWDER 3 FREEZE DRIED ZUCCHINI 2 MM HALF SLICE MEDALLIONS 3 FREEZE DRIED ASPARAGUS 2 MM MEDALLIONS 2 FREEZE DRIED CHOPPED BLANCHED SPINACH 1.5 FREEZE DRIED DICED GREEN ONIONS 1 FREEZE DRIED DICED CELERY STALK 0.4 FREEZE DRIED MINCED PARSLEY 0.4 FREEZE DRIED MINCED GARLIC 0.3 GROUND BLACK PEPPER
[0782] 160 GRAMS OF HOT WATER ARE SUBSEQUENTLY ADDED DURING COOKING
[0783] 18 GRAMS OF OLIVE OIL ARE SUBSEQUENTLY ADDED DURING COOKING.
EXAMPLE 9TOMATO PASTA
[0784] COOKING OPERATION SEQUENCE:
[0785] 1. (
[0786] 2. STAND BY FOR 5 SECONDS.
[0787] 3. (
[0788] OPERATE HOT WATER PUMP 206 FOR 3 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0789] OPERATE STIRRING MOTOR 406 DURING THE ENTIRE PERIOD OF OPERATION OF HOT WATER PUMP 206.
[0790] 4. (
[0791] OPERATE HOT WATER PUMP 206 FOR 4 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0792] OPERATE MICROWAVE ENERGY GENERATING ASSEMBLY 180 DURING THE ENTIRE DURATION OF OPERATION OF HOT WATER PUMP 206.
[0793] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0794] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0795] 5. (
[0796] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0797] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0798] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0799] 6. (
[0800] OPERATE HOT WATER PUMP 206 FOR 3 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0801] OPERATE MICROWAVE ENERGY GENERATING ASSEMBLY 180 DURING THE ENTIRE DURATION OF OPERATION OF HOT WATER PUMP 206.
[0802] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0803] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0804] 7. (
[0805] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0806] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0807] 8. (
[0808] 9. (
[0809] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0810] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0811] 10. STAND BY FOR 4 SECONDS.
[0812] 11. (
[0813] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0814] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0815] 12. (
[0816] 13. (
[0817] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0818] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0819] 14. STAND BY FOR 4 SECONDS.
[0820] 15. (
[0821] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0822] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0823] 16. STAND BY FOR 8 SECONDS.
[0824] 17. (
[0825] OPERATE STIRRING MOTOR 406 FOR 5 CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND.
[0826] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0827] 18. (
[0828] RECIPE: TOMATO PASTA
[0829] DRY INGREDIENTS
TABLE-US-00019 GRAMS ITEMS 45 QUICK COOKING ELBOW PASTA 10 FREEZE DRIED PUREED TOMATOES 5 FREEZE DRIED DICED TOMATOES 4 TOMATO PASTE POWDER 2.5 SALT 1.7 WHITE SUGAR 0.8 FREEZE DRIED GARLIC POWDER 0.3 FREEZE DRIED BASIL 0.2 GROUND CHILI PEPPER 0.2 FREEZE DRIED FINELY GROUND BEET POWDER 0.2 FREEZE DRIED OREGANO
[0830] 245 GRAMS OF WATER ARE ADDED SUBSEQUENTLY DURING COOKING.
[0831] 12 GRAMS OF OLIVE OIL ARE SUBSEQUENTLY ADDED DURING COOKING.
EXAMPLE 10 COUSCOUS
[0832] COOKING OPERATION SEQUENCE:
[0833] 1. (
[0834] OPERATE HOT WATER PUMP 206 FOR 10 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0835] 2. (
[0836] OPERATE HOT WATER PUMP 206 FOR 2 CYCLES OF 3 SECONDS DURATION EACH, EACH CYCLE BEING SEPARATED BY A REST PERIOD OF 0.5 SECOND.
[0837] OPERATE MICROWAVE ENERGY GENERATING ASSEMBLY 180 DURING THE ENTIRE DURATION OF OPERATION OF HOT WATER PUMP 206.
[0838] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECONDS FOR THE 7 SECONDS DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0839] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0840] 3. (
[0841] OPERATE HOT WATER PUMP 206 FOR 1 CYCLE OF 3 SECONDS DURATION, WITH A REST PERIOD OF 0.5 SECONDS, FOLLOWED BY 1 CYCLE OF 1 SECOND DURATION.
[0842] OPERATE MICROWAVE ENERGY GENERATING ASSEMBLY 180 DURING THE ENTIRE 4 SECONDS DURATION OF OPERATION OF HOT WATER PUMP 206.
[0843] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0844] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0845] 4. (
[0846] OPERATE AIR PUMP 210 FOR 5 SECONDS.
[0847] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECONDS FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0848] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0849] 5. (
[0850] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0851] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0852] 6. (
[0853] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0854] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0855] 7. (
[0856] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0857] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0858] 8. (
[0859] OPERATE STIRRING MOTOR FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF THE MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0860] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0861] 9. (
[0862] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0863] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0864] 10. (
[0865] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0866] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0867] 11. (
[0868] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF THE MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0869] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0870] 12. (
[0871] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0872] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0873] 13. (
[0874] OPERATE STIRRING MOTOR 406 FOR MULTIPLE CYCLES, EACH CYCLE OF 0.02 SECOND FOLLOWED BY A REST PERIOD OF 0.2 SECOND FOR THE DURATION OF OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180.
[0875] OPERATE FANS 186 AND 189 DURING OPERATION OF MICROWAVE ENERGY GENERATING ASSEMBLY 180 AND FOR AN ADDITIONAL APPROXIMATELY 20 MINUTES THEREAFTER.
[0876] 14. (
[0877] 15. STAND BY FOR 30 SECONDS.
[0878] RECIPECOUSCOUS
[0879] DRY INGREDIENTS
TABLE-US-00020 GRAMS ITEMS 57 INSTANT MEDIUM SIZE COUSCOUS 12 DRIED CRANBERRIES 12 FREEZE DRIED ROASTED SMALL UNPEELED ALMONDS 10 FREEZE DRIED PRE-COOKED HADAS CHICKPEAS 5 FREEZE DRIED DICED CARROTS 2 SALT 0.4 GROUND CINNAMON 0.3 FREEZE DRIED CORIANDER LEAF FLAKES 0.2 GROUND CURCUMIN 0.2 GROUND HOT PAPRIKA
[0880] 220 GRAMS OF WATER ARE SUBSEQUENTLY ADDED DURING COOKING.
[0881] 12 GRAMS OF OLIVE OIL ARE SUBSEQUENTLY ADDED DURING COOKING.
[0882] It will be appreciated by persons skilled in the art that the present invention is not limited by what has been particularly shown and described hereinabove but includes generalizations and alternatives thereof which are not shown in the prior art.