A collapsible stool can be used in an open position and collapsed to a closed position. The collapsible stool includes first and second leg members. The first and second leg members can be rotatably coupled. The leg members can include geometries to reduce or eliminate interference between structural elements when folding the stool flat.
Enhanced network power factor corrective designs are presented that can use corrective devices that achieve long-term, operationally stable mechanical work. Embodiments can utilize reverse-winding induction motor designs with engineerable parameters and configurations for the reverse winding (13) in systems and through methods where an inductive motor (1) can present a current that leads voltage and a leading power factor (16) to correct other existing induction motors (8) in an initial network (9) or be optimized for a particular application. Designs also present a power factor correction that can present a variable correction without altering the character or physical capacitive value of an electrical correction component. Individual induction motors that have leading current and a leading power factor (16) can be provided to improve reverse winding induction motors. Progressive start controls (23) can also be used in a manner that limits inrush current to operational levels with passive current establishment control where reverse winding (13) effects can be used and perhaps even delayed to passively limit and even effect a current decrease while rotational acceleration continues after initial start transition.
H02P 1/54 - Arrangements for starting electric motors or dynamo-electric converters for starting dynamo-electric motors or dynamo-electric converters for starting two or more dynamo-electric motors
H02P 23/20 - Controlling the acceleration or deceleration
H02P 23/24 - Controlling the direction, e.g. clockwise or counterclockwise
3.
IMPROVED REVERSE MAGNETIC ASYNCHRONOUS INDUCTION MOTOR SYSTEMS AND METHODS
H02P 25/02 - Arrangements or methods for the control of AC motors characterised by the kind of AC motor or by structural details characterised by the kind of motor
H02P 25/04 - Single phase motors, e.g. capacitor motors
4.
IMPROVED REVERSE MAGNETIC ASYNCHRONOUS INDUCTION MOTOR SYSTEMS AND METHODS
Improved reverse-winding induction motors are presented that can achieve performance that was not previously possible and that teach new ways to configure and utilize the reverse- winding class of motors. Embodiments can present reverse-winding induction motor (1) designs that have at least one drive stator-coordinated reverse magnetic system (8), at least IE4-total motor- efficiency reverse magnetic stator system (9), at least one rated-full load slip-minimized reverse magnetic stator system (10), at least one exorbitantly-sized, reverse magnetic effect-boosting reverse magnetic stator system (24), and even at least one nearly joule effect breakdown current density reverse magnetic stator system (26). New factors and new relationships to configure reverse stator capacitor(s) are disclosed that can achieve improvements in efficiency, slip, and power factor beyond what was previously understood as the limit of performance for a reverse- winding class of induction motor.
H02K 3/28 - Layout of windings or of connections between windings
H02P 25/02 - Arrangements or methods for the control of AC motors characterised by the kind of AC motor or by structural details characterised by the kind of motor
H02P 25/04 - Single phase motors, e.g. capacitor motors
A collapsible stool can be used in an open position and collapsed to a closed position. The collapsible stool includes first and second leg members. The first and second leg members can be rotatably coupled. A stop mechanism can be utilized to maintain the first and second leg members in open and closed positions.
Enhanced network power factor corrective designs are presented that can use corrective devices that achieve long-term, operationally stable mechanical work. Embodiments can utilize reverse-winding induction motor designs with engineerable parameters and configurations for the reverse winding (13) in systems and through methods where an inductive motor (1) can present a current that leads voltage and a leading power factor (16) to correct other existing induction motors (8) in an initial network (9) or be optimized for a particular application. Designs also present a power factor correction that can present a variable correction without altering the character or physical capacitive value of an electrical correction component. Individual induction motors that have leading current and a leading power factor (16) can be provided to improve reverse winding induction motors. Progressive start controls (23) can also be used in a manner that limits inrush current to operational levels with passive current establishment control where reverse winding (13) effects can be used and perhaps even delayed to passively limit and even effect a current decrease while rotational acceleration continues after initial start transition.
H02P 1/54 - Arrangements for starting electric motors or dynamo-electric converters for starting dynamo-electric motors or dynamo-electric converters for starting two or more dynamo-electric motors
H02P 23/20 - Controlling the acceleration or deceleration
H02P 23/24 - Controlling the direction, e.g. clockwise or counterclockwise
7.
ENHANCED REVERSE-WINDING INDUCTION MOTOR DESIGNS, SYSTEMS, AND METHODS
Enhanced network power factor corrective designs are presented that can use corrective devices that achieve long-term, operationally stable mechanical work. Embodiments can utilize reverse-winding induction motor designs with engineerable parameters and configurations for the reverse winding (13) in systems and through methods where an inductive motor (1) can present a current that leads voltage and a leading power factor (16) to correct other existing induction motors (8) in an initial network (9) or be optimized for a particular application. Designs also present a power factor correction that can present a variable correction without altering the character or physical capacitive value of an electrical correction component. Individual induction motors that have leading current and a leading power factor (16) can be provided to improve reverse winding induction motors. Progressive start controls (23) can also be used in a manner that limits inrush current to operational levels with passive current establishment control where reverse winding (13) effects can be used and perhaps even delayed to passively limit and even effect a current decrease while rotational acceleration continues after initial start transition.
H02K 17/08 - Motors with auxiliary phase obtained by externally fed auxiliary windings, e.g. capacitor motors
H02K 17/12 - Asynchronous induction motors for multi-phase current
H02P 1/00 - Arrangements for starting electric motors or dynamo-electric converters
H02P 1/44 - Arrangements for starting electric motors or dynamo-electric converters for starting dynamo-electric motors or dynamo-electric converters for starting an individual single-phase induction motor by phase-splitting with a capacitor
8.
ENHANCED REVERSE-WINDING INDUCTION MOTOR DESIGNS, SYSTEMS, AND METHODS
Enhanced network power factor corrective designs are presented that can use corrective devices that achieve long-term, operationally stable mechanical work. Embodiments can utilize reverse-winding induction motor designs with engineerable parameters and configurations for the reverse winding (13) in systems and through methods where an inductive motor (1) can present a current that leads voltage and a leading power factor (16) to correct other existing induction motors (8) in an initial network (9) or be optimized for a particular application. Designs also present a power factor correction that can present a variable correction without altering the character or physical capacitive value of an electrical correction component. Individual induction motors that have leading current and a leading power factor (16) can be provided to improve reverse winding induction motors. Progressive start controls (23) can also be used in a manner that limits inrush current to operational levels with passive current establishment control where reverse winding (13) effects can be used and perhaps even delayed to passively limit and even effect a current decrease while rotational acceleration continues after initial start transition.
H02K 17/08 - Motors with auxiliary phase obtained by externally fed auxiliary windings, e.g. capacitor motors
H02K 17/12 - Asynchronous induction motors for multi-phase current
H02P 1/00 - Arrangements for starting electric motors or dynamo-electric converters
H02P 1/44 - Arrangements for starting electric motors or dynamo-electric converters for starting dynamo-electric motors or dynamo-electric converters for starting an individual single-phase induction motor by phase-splitting with a capacitor
9.
Methods for networks of efficiently powered electrical devices
Enhanced network power factor corrective designs are presented that can use corrective devices that achieve long-term, operationally stable mechanical work. Embodiments can utilize reverse-winding induction motor designs with engineerable parameters and configurations for the reverse winding (13) in systems and through methods where an inductive motor (1) can present a current that leads voltage and a leading power factor (16) to correct other existing induction motors (8) in an initial network (9) or be optimized for a particular application. Designs also present a power factor correction that can present a variable correction without altering the character or physical capacitive value of an electrical correction component. Individual induction motors that have leading current and a leading power factor (16) can be provided to improve reverse winding induction motors. Progressive start controls (23) can also be used in a manner that limits inrush current to operational levels with passive current establishment control where reverse winding (13) effects can be used and perhaps even delayed to passively limit and even effect a current decrease while rotational acceleration continues after initial start transition.
H02P 1/54 - Arrangements for starting electric motors or dynamo-electric converters for starting dynamo-electric motors or dynamo-electric converters for starting two or more dynamo-electric motors
H02P 23/20 - Controlling the acceleration or deceleration
H02P 23/24 - Controlling the direction, e.g. clockwise or counterclockwise
10.
Enhanced reverse-winding induction motor designs, systems, and methods
Enhanced network power factor corrective designs are presented that can use corrective devices that achieve long-term, operationally stable mechanical work. Embodiments can utilize reverse-winding induction motor designs with engineerable parameters and configurations for the reverse winding (13) in systems and through methods where an inductive motor (1) can present a current that leads voltage and a leading power factor (16) to correct other existing induction motors (8) in an initial network (9) or be optimized for a particular application. Designs also present a power factor correction that can present a variable correction without altering the character or physical capacitive value of an electrical correction component. Individual induction motors that have leading current and a leading power factor (16) can be provided to improve reverse winding induction motors. Progressive start controls (23) can also be used in a manner that limits inrush current to operational levels with passive current establishment control where reverse winding (13) effects can be used and perhaps even delayed to passively limit and even effect a current decrease while rotational acceleration continues after initial start transition.
H02P 1/54 - Arrangements for starting electric motors or dynamo-electric converters for starting dynamo-electric motors or dynamo-electric converters for starting two or more dynamo-electric motors
H02P 23/24 - Controlling the direction, e.g. clockwise or counterclockwise
H02P 23/20 - Controlling the acceleration or deceleration
06 - Common metals and ores; objects made of metal
13 - Firearms; explosives
18 - Leather and imitations of leather
22 - Rope, netting, tents, awnings, sails and sacks; padding and stuffing materials
24 - Textiles and textile goods
25 - Clothing; footwear; headgear
28 - Games; toys; sports equipment
35 - Advertising and business services
Goods & Services
Metal rigging lines for decoys for use in hunting and
waterfowling; metal weights for decoys for use in hunting
and waterfowling. Gun cases, bags specially adapted to hold guns and
ammunition; gun slings; shell savers. Pet clothing, namely, dog vests; dog vests in the nature of
animal harnesses; hunting bags, hunting totes, hunting
backpacks; hunting blind bags; hunting gear bags. Non-metal rigging lines for decoys for use in hunting and
waterfowling. Cloth decoy flags. Hunting themed clothing, namely, hunting themed tee shirts,
hunting themed sweatshirts, hunting themed hats, and hunting
themed activewear. Hunting and waterfowling goods, namely, decoy rigging
weights, carabiners, swivels, crimps, lanyards, cords and
line; hunting decoy bags, hunting decoy totes, hunting
blinds for persons or dogs; waterfowl hunting accessories,
namely, decoy rigging components, game straps, hand warmers,
waterfowl call lanyards, wraps for pants or sleeves, and
portable holders for equipment, clothing, ammunition, and
drink containers. Retail store services featuring goods for use in the fields
of hunting and waterfowling.
06 - Common metals and ores; objects made of metal
13 - Firearms; explosives
18 - Leather and imitations of leather
22 - Rope, netting, tents, awnings, sails and sacks; padding and stuffing materials
24 - Textiles and textile goods
28 - Games; toys; sports equipment
35 - Advertising and business services
Goods & Services
(1) Metal rigging lines for decoys for use in hunting and waterfowling; metal weights for decoys for use in hunting and waterfowling.
(2) Gun cases, bags specially adapted to hold guns and ammunition, namely, shell savers; gun slings in the nature of straps specially adapted to hold guns; holders for ammunition in the nature of ammunition cases.
(3) Pet clothing, namely, dog vests; dog vests in the nature of animal harnesses; hunting bags, hunting backpacks; hunting blind bags; hunting gear bags; holder for clothing in the nature of hunting bags.
(4) Non-metal rigging lines for decoys for use in hunting and waterfowling.
(5) Cloth decoy flags.
(6) Hunting and waterfowling goods, namely, hunting and waterfowling decoy kits comprised of decoy rigging weights, metal carabiners, decoy rigging swivels, crimps for decoy lines for waterfowl hunting, hunting call lanyards, decoy cords and decoy lines for waterfowl hunting; hunting decoy bags, hunting blinds for persons and dogs; waterfowl hunting accessories, namely, waterfowl hunting kits comprised of game straps, hand warmer belts, decoy rigging components in the nature of lines and weights, waterfowl call lanyards, and also including portable holders in the nature of carrying cases specially adapted for waterfowling hunting equipment, namely, game calls, decoys, hunting lures, binoculars, telescopes, hunting knives and saddle bags, clothing, ammunition and drink containers. (1) Retail store services featuring equipment, clothing and accessories for hunting, namely, game calls, binoculars, telescopes, hunting knives, decoys for hunting, hunting blinds, lures for hunting and fishing, scent eliminating sprays for use during hunting and outdoor recreation, tree stands for hunting.
A decoy comprising a decoy body having an upper portion shaped to resemble water fowl and a lower portion extending downward from the upper portion; the decoy body including an outer wall defining a cavity therein, wherein the decoy body is constructed of a collapsible shape memory polymer material having an initial volume that collapses under a compressive force to form a second volume that is less than the initial volume, and wherein upon release of the compressive force, the decoy body returns to the initial volume; the lower portion of the decoy body includes an integral keel having a greater thickness than the wall to form a concentrated mass in the lower portion.
06 - Common metals and ores; objects made of metal
13 - Firearms; explosives
18 - Leather and imitations of leather
21 - HouseHold or kitchen utensils, containers and materials; glassware; porcelain; earthenware
22 - Rope, netting, tents, awnings, sails and sacks; padding and stuffing materials
24 - Textiles and textile goods
28 - Games; toys; sports equipment
35 - Advertising and business services
Goods & Services
Metal rigging lines for decoys for use in hunting and waterfowling; metal weights for decoys for use in hunting and waterfowling; metal hardware, namely, carabiners of metal; decoy rigging weights of metal Gun cases, bags specially adapted to hold guns and ammunition, namely, shell savers; gun slings in the nature of straps specially adapted to hold guns; holders for ammunition in the nature of ammunition cases Pet clothing, namely, dog vests; dog vests in the nature of animal harnesses; hunting bags, hunting backpacks; hunting blind bags; hunting gear bags; holder for clothing in the nature of hunting bags Portable beverage container holder Non-metal rigging lines for decoys for use in hunting and waterfowling; decoy rigging components, namely, non-metal lines Cloth decoy flags Hunting and waterfowling goods, namely, hunting and waterfowling decoy kits comprised of decoy rigging weights, carabiners, swivels, crimps, lanyards, cords and line; hunting decoy bags, hunting blinds for persons or dogs; waterfowl hunting accessories, namely, waterfowl hunting kits comprised of game straps, decoy rigging components in the nature of lines and weights, hand warmers, waterfowl call lanyards, wraps for pants or sleeves, and also including portable holders in the nature of carrying cases specially adapted for waterfowling hunting equipment, clothing, ammunition, and drink containers Retail store services featuring goods for use in the fields of hunting and waterfowling
09 - Scientific and electric apparatus and instruments
Goods & Services
Industrial technology, namely, electric drive motors, other than for land vehicles, for commercial and industrial use; structural parts and components of the aforementioned goods Industrial technology, namely, electric and electronic control and regulating apparatus, namely, electronic controllers and electric soft start units for electric drive motors; structural parts and components of the aforementioned goods
An anchor system including a tether attached to a floating decoy at a first end and a weight mounted on the tether and freely slidable to a position substantially adjacent to the floating decoy.