1461162029-9cfcb671-177d-4159-8380-df6853604b16

1. A system for synchronizing data between a device management system and a ticketing system, the system comprising:
a server including a processor;
a ticketing interface of the server that receives, from the ticketing system, ticketing information associated with a ticketing ticket, and receives, from the device management system, device management information associated with a device management ticket;
an update module executing on the server that compares the ticketing information with the device management information, and updates, responsive to the comparison, the ticketing information to correspond to the device management information;
a mapping module executing on the server that identifies, based on the device management information, a ticket category of the device management ticket;
a service board selection module executing on the server that selects, responsive to the identified ticket category, a service board for the ticketing ticket; and
the update module further updates the device management information on the device management ticket on the device management system to correspond to the ticketing information about the ticketing ticket on the ticketing system,
wherein the update module generates an updated device management ticket on the device management system that includes the device management information updated by the update module.
2. The system of claim 1, wherein the ticketing system selects, dependent on the service board, one or more user interfaces for presentation of the ticketing ticket.
3. The system of claim 1, wherein the device management system selects the update module from a collection comprising a plurality of update modules configured to interface with one or more different types of ticketing systems.
4. The system of claim 1, wherein the device management information includes time record information equal to an estimated amount of time for resolving the device management ticket.
5. The system of claim 4, wherein the update module updates the ticketing ticket with the time record information.
6. The system of claim 1, wherein one or more items of the device management information is initialized from a template, the template selected based on a device referenced by the device management ticket.
7. A method for synchronizing data between a device management system and a ticketing system via a ticketing interface, comprising:
receiving, by an update module executing on at least one processor of a server communicatively coupled to the device management system and the ticketing system, ticket information associated with a ticketing ticket from the ticketing system;
receiving, by the update module from the device management system, device management information associated with a device management ticket;
comparing, by the update module, the ticketing information with the device management information;
updating, by the update module responsive to the comparison, the ticketing information to correspond to the device management information;
identifying, by a mapping module executing on the server, a ticket category of the device management ticket based on the device management information;
selecting, by a service board selection module executing on the server, a service board for the ticketing ticket responsive to the identified ticket category; and
updating the device management information on the device management ticket on the device management system to match the ticketing information about the ticketing ticket on the ticketing system; and
generating an updated device management ticket on the device management system with updated device management information.
8. The method of claim 7, further comprising:
selecting, by the ticketing system, dependent on the service board, one or more user interfaces for presentation of the ticketing ticket.
9. The method of claim 7, further comprising:
selecting, by the device management system, a procedure for the updating from a collection of stored procedures configured to interface with one or more different types of ticketing systems.
10. The method of claim 7, further comprising:
recording, in the device management information, time record information equal to an estimated amount of time to resolve the device management ticket.
11. The method of claim 10, further comprising:
updating the ticketing ticket with the time record information.
12. The method of claim 7, further comprising:
initializing one or more items of the device management information from a template, the template selected based on a device referenced by the device management ticket.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A staged cluster wind generator system comprising:
a base having a top end and a bottom end, said bottom end being configured for coupling to a supporting surface;
a housing coupled to said top end of said base;
a primary generator coupled to said housing, said primary generator being positioned in said housing;
a drive shaft mechanically coupled to and extending from said primary generator, said drive shaft extending through said housing;
a propeller coupled to said drive shaft, said propeller being configured for being rotated by wind wherein said drive shaft drives said primary generator;
an annular main gear coupled to said drive shaft, said annular main gear being rotated by rotation of said drive shaft;
a plurality of secondary generators, each secondary generator being coupled to said housing, each secondary generator having a drive gear operationally coupled to said annular main gear wherein rotation of said drive shaft drives each said secondary generator.
2. The system of claim 1, further comprising a plurality of clutch assemblies, each clutch assembly being operationally coupled to an associated one of said secondary generators.
3. The system of claim 1, further comprising said housing being cylindrical.
4. The system of claim 3, further comprising said secondary generators being positioned in a radial array around said housing.
5. The system of claim 4, further comprising:
said annular main gear having outwardly facing teeth extending around said annular main gear; and
said drive gear of each said secondary generator engaging said outwardly facing teeth.
6. The system of claim 1, further comprising a support member having a first side coupled to said propeller in radially spaced relationship to said drive shaft, said support member having a second side coupled to said annular main gear wherein said propeller is supported by said main gear and said drive shaft.
7. The system of claim 6, further comprising an outer edge of said first side of said support member being outwardly offset from an outer edge of said second side of said support member.
8. A staged cluster wind generator system comprising:
a base having a top end and a bottom end, said bottom end being configured for coupling to a supporting surface;
a substantially cylindrical housing coupled to said top end of said base;
a primary generator coupled to said housing, said primary generator being positioned in said housing;
a drive shaft mechanically coupled to and extending from said primary generator, said drive shaft extending through said housing;
a propeller coupled to said drive shaft, said propeller being configured for being rotated by wind wherein said drive shaft drives said primary generator;
an annular main gear coupled to said drive shaft, said annular main gear being rotated by rotation of said drive shaft, said annular main gear having outwardly facing teeth extending around said annular main gear;
a plurality of secondary generators, each secondary generator being coupled to said housing, each secondary generator having a drive gear operationally coupled to said annular main gear wherein rotation of said drive shaft drives each said secondary generator, said secondary generators being positioned in a radial array around said housing, said drive gear of each said secondary generator engaging said outwardly facing teeth;
a plurality of clutch assemblies, each clutch assembly being operationally coupled to an associated one of said secondary generators;
a support member having a first side coupled to said propeller in radially spaced relationship to said drive shaft, said support member having a second side coupled to said annular main gear wherein said propeller is supported by said main gear and said drive shaft; and
an outer edge of said first side of said support member being outwardly offset from an outer edge of said second side of said support member.

1461162018-851ac20f-e443-4170-a206-b498ed980380

1. A mechanism for deflecting a headlamp optical axis, the mechanism comprising:
a connecting lever defining a first end and a second end, having the first end fixed to a headlamp assembly which emits light and which is mounted on an automotive vehicle, a prescribed portion between the first and second ends of the connecting lever being attached in a horizontally movable manner to one predetermined portion of an outside frame which either encloses the headlamp assembly or constitutes a body of the automotive vehicle;
a bracket having a first end thereof attached to another predetermined portion of the outside frame;
a motor including a motor body which includes a rotating mechanism, and a rotary shaft which has a rearward portion thereof inserted through the motor body, has a frontward portion thereof sticking out from the motor body, and which has a spiral screw formed on the frontward portion thereof;
a motor attaching member for attaching the motor to a second end of the bracket in a horizontally moveable manner; and
a traveling block shaped substantially hollow-cylindrical, having a screw formed on an inner circumference so as to threadedly engage with the spiral screw formed on the rotary shaft, and having an outer circumference attached to the second end of the connecting lever in a horizontally movable manner, the traveling block being caused to travel along the rotary shaft when the rotary shaft rotates with respect to the motor body;
wherein the motor attaching member is constituted by a front end plate which has a center hole formed at its main section and allowing the rotary shaft to go therethrough, includes arm sections Conned at rim portions of the main section and bent toward a rear end of the motor body, and which has the main section attached to a portion of the motor body having the rotary shaft sticking out, and wherein the motor is attached such that the arm sections of the front end plate are movably jointed to the second end of the bracket.
2. A mechanism according to claim 1, wherein the headlamp assembly emits light from a front surface and has a rear portion fixed to the connecting lever.
3. A mechanism according to claim 1, wherein the connecting lever, the bracket, the motor, the motor attaching member, and the traveling block are housed in a chassis.
4. A mechanism according to claim 1, wherein the motor is a stepping motor.
5. A mechanism for swinging an object, the mechanism comprising:
a motor including a motor body which includes a rotating mechanism, and a rotary shaft which has a rearward portion thereof inserted through the motor body, has a frontward portion thereof sticking out from the motor body, an which has a spiral screw formed on the frontward portion thereof;
a traveling block shaped substantially hollow-cylindrical, and having a screw formed on an inner circumference so as to threadedly engage with the spiral screw formed on the rotary shaft, the traveling block being caused to travel along the rotary shaft when the rotary shaft rotates with respect to the motor body;
a bracket including a first end as a leg section to be fixed to one predetermined portion of an outside support body, and a second end as a motor holding section to hold the motor such that the motor moves in a plane;
a connecting lever having a first end thereof fixed to an object to be swung, and having a second end thereof freely attached to an outer circumference of the traveling block such that the traveling block travels along the rotary shall in a plane parallel to the plane in which the motor moves, a prescribed portion between the first and second ends of the connecting lever being attached to another predetermined portion of the outside support body such that the first and second ends of the connecting lever can move in a plane parallel to the plane in which the motor moves; and
a motor attaching member for attaching the motor to the motor holding section of the bracket,
wherein the motor attaching member is constituted by a front end plate which has a center hole formed at a main section and allowing the rotary shaft to go therethrough, includes arm sections formed at rim portions of the main section and bent toward a rear end of the motor body, and which has the main section attached to a portion of the motor body having the rotary shaft sticking out and wherein the motor is attached such that the arm sections of the front end plate are movably jointed to the motor holding section of the bracket.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A method of manufacturing a standard ear shell for use in an ITE (In-The-Ear) type general-purpose hearing aid, the standard ear shell manufacturing method comprising:
an ear cotton blockthread insert process that pushes an ear cotton block into an external auditory meatus together with an elongate thread for use as a withdrawing purpose;
a curing process that injects a silicone resin mixture that is obtained by mixing silicone and a hardener at the ratio of 1 to 1, after having undergone the ear cotton blockthread insert process;
an external auditory meatus ear pattern taking process that pulls the elongate thread for use as a withdrawing purpose after having undergone the curing process, to thus take an external auditory meatus ear pattern including the ear cotton block and the ear shell that has been cured in the curing process;
an ear pattern shapesize computerized data collection process that computerizes and collects three-dimensional geometric shape and size of the external auditory meatus ear pattern 5 from the external auditory meatus ear pattern 5 that has been taken in the external auditory meatus ear pattern taking process, using a three-dimensional (3D) scanner;
an external auditory meatus ear pattern volumecircumferencelengthangle calculation process that calculates volume, circumference (C0, C1, C2) length (L1, L2), and angle (\u03b81, \u03b82) of the external auditory meatus from the three-dimensional geometric shape and size computerized data of the external auditory meatus ear pattern that has been collected in the ear pattern shapesize computerized data collection process; and
a geometric numerical value induction process that statistically processes data of the volume, circumference (C0, C1, C2) length (L1, L2), and angle (\u03b81, \u03b82) that have been collected from a number of the ear patterns of a number of the external auditory meatuses that have been calculated in the external auditory meatus ear pattern volumecircumferencelengthangle calculation process, to thereby induce equated geometric numerical values.