1460735465-9ce565a6-170f-42fb-8309-60d15eb07ab4

1. A method comprising:
establishing, at a mobile device, a first connection to a remote server;
downloading, over the first connection from the remote server to the mobile device, one or more goals for a user;
downloading, over the first connection from the remote server to the mobile device, performance data related to the one or more goals;
storing the one or more goals on the mobile device;
storing the performance data on the mobile device;
terminating the first connection between the mobile device and the remote server after downloading the goals and the performance data;
receiving user input at the mobile device after terminating the first connection;
modifying the performance data stored on the mobile device based on the user input;
after modifying the performance data, establishing, at the mobile device, a second connection to the remote server; and
uploading the performance data over the second connection from the mobile device to the remote server.
2. The method of claim 1, further comprising:
executing, on the mobile device, an application that is coded in a native programming language in which an operating system of the mobile device is also coded;
wherein the modifying of the performance data is performed by the application.
3. The method of claim 1, further comprising:
building a case base of goals that were previously achieved by people other than the user;
indexing the case base of goals based on key attributes;
selecting one or more particular goals from the case base of goals based on similarities between the user and the people who previously achieved the one or more particular goals;
adapting the one or more particular goals, based on attributes of the user, to generate one or more personalized goals for the user; and
assigning the one or more personalized goals to the user.
4. The method of claim 3, further comprising:
selecting the one or more particular goals based on a similarity of tags that associated with the one or more particular goals and tags that are associated with the user.
5. The method of claim 3, further comprising:
selecting the one or more particular goals based on a popularity of selection of the particular goals by people other than the user.
6. The method of claim 3, further comprising:
selecting the one or more particular goals based on a competency gap between a level of skill required for a particular job and a level of skill currently possessed by the user.
7. The method of claim 1, further comprising:
receiving user input that identifies a feed from a source external to both the mobile device and the remote server;
receiving user input that specifies a document into which data from the feed is to be embedded;
monitoring the feed continuously to detect new data within the feed; and
in response to detecting new data within the feed, automatically modifying the document to include the new data.
8. The method of claim 7, wherein the user input identifies a feed from a social media site.
9. The method of claim 7, wherein the user input identifies a stock ticker feed.
10. The method of claim 1, further comprising:
receiving, at the mobile device, user input that selects one or more particular goals from a set of goals associated with the user at the remote server;
wherein downloading the one or more goals for the user consists of downloading only the particular goals without downloading other goals associated with the user at the remote server; and
wherein downloading the performance data related to the one or more goals consists of downloading only the performance data related to the particular goals without downloading other performance data associated with other goals associated with the user at the remote server.
11. A non-transitory computer-readable storage memory storing instructions which, when executed by one or more processors, cause the one or more processors to perform operations comprising:
establishing, at a mobile device, a first connection to a remote server;
downloading, over the first connection from the remote server to the mobile device, one or more goals for a user;
downloading, over the first connection from the remote server to the mobile device, performance data related to the one or more goals;
storing the one or more goals on the mobile device;
storing the performance data on the mobile device;
terminating the first connection between the mobile device and the remote server after downloading the goals and the performance data;
receiving user input at the mobile device after terminating the first connection;
modifying the performance data stored on the mobile device based on the user input;
after modifying the performance data, establishing, at the mobile device, a second connection to the remote server; and
uploading the performance data over the second connection from the mobile device to the remote server.
12. The non-transitory computer-readable storage medium of claim 11, wherein the operations further comprise:
executing, on the mobile device, an application that is coded in a native programming language in which an operating system of the mobile device is also coded;
wherein the modifying of the performance data is performed by the application.
13. The non-transitory computer-readable storage medium of claim 11, wherein the operations further comprise:
building a case base of goals that were previously achieved by people other than the user;
indexing the case base of goals based on key attributes;
selecting one or more particular goals from the case base of goals based on similarities between the user and the people who previously achieved the one or more particular goals;
adapting the one or more particular goals, based on attributes of the user, to generate one or more personalized goals for the user; and
assigning the one or more personalized goals to the user.
14. The non-transitory computer-readable storage medium of claim 13, wherein the operations further comprise:
selecting the one or more particular goals based on a similarity of tags that associated with the one or more particular goals and tags that are associated with the user.
15. The non-transitory computer-readable storage medium of claim 13, wherein the operations further comprise:
selecting the one or more particular goals based on a popularity of selection of the particular goals by people other than the user.
16. The non-transitory computer-readable storage medium of claim 13, wherein the operations further comprise:
selecting the one or more particular goals based on a competency gap between a level of skill required for a particular job and a level of skill currently possessed by the user.
17. The non-transitory computer-readable storage medium of claim 11, wherein the operations further comprise:
receiving user input that identifies a feed from a source external to both the mobile device and the remote server;
receiving user input that specifies a document into which data from the feed is to be embedded;
monitoring the feed continuously to detect new data within the feed; and
in response to detecting new data within the feed, automatically modifying the document to include the new data.
18. The non-transitory computer-readable storage medium of claim 17, wherein the user input identifies a feed from a social media site.
19. The non-transitory computer-readable storage medium of claim 17, wherein the user input identifies a stock ticker feed.
20. The non-transitory computer-readable storage medium of claim 11, wherein the operations further comprise:
receiving, at the mobile device, user input that selects one or more particular goals from a set of goals associated with the user at the remote server;
wherein downloading the one or more goals for the user consists of downloading only the particular goals without downloading other goals associated with the user at the remote server; and
wherein downloading the performance data related to the one or more goals consists of downloading only the performance data related to the particular goals without downloading other performance data associated with other goals associated with the user at the remote server.

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 vacuum deposition device, comprising:
a coating chamber having a top wall and a bottom wall; and
a cooling device defined in the top or bottom wall, the cooling device comprising a cooling runner formed in the wall defining the cooling device.
2. The vacuum deposition device as claimed in claim 1, wherein the cooling runner has a depth of about 10 mm-15 mm.
3. The vacuum deposition device as claimed in claim 1, wherein the cooling runner is sealed by a steel plate which is welded to the wall defining the cooling runner to confine liquid to the cooling runner.
4. The vacuum deposition device as claimed in claim 3, wherein the steel plate has a thickness of about 2 mm-5 mm.
5. The vacuum deposition device as claimed in claim 1, wherein the cooling runner is formed by laser grooving or lathing the wall defining the cooling runner.
6. The vacuum deposition device as claimed in claim 1, wherein the cooling device comprising an entrance of cooling agent and an outlet of cooling agent connecting with the cooling runner
7. The vacuum deposition device as claimed in claim 1, wherein the cooling runner, defined to have a curved pattern, is defined in the top or bottom wall.

1460735457-a93f90a6-4a4e-47fa-878d-c73154039a39

1. A method for remanufacturing a printer cartridge component, the method comprising:
providing a printer cartridge component comprising a flanged organic photoconductor (OPC) drum having a flange portion and a cylinder portion, the flange portion having a drum cylinder engagement end attached and inserted in a locked position with a flange lock in a first end of the cylinder portion;
unlocking the flange lock so that the flange portion is in an unlocked position in the first end of the cylinder portion;
securing the unlocked flange portion;
removing the cylinder portion from the secured unlocked flange portion to obtain a removed cylinder portion and a removed flange portion; and,
assembling the removed flange portion into a replacement OPC drum cylinder portion to obtain a remanufactured printer cartridge component.
2. The method of claim 1 further comprising installing the remanufactured printer cartridge component into a laser printer cartridge.
3. The method of claim 1 further comprising discarding the removed cylinder portion.
4. The method of claim 1 wherein the flange portion has a grounding plate with one or more contact portions.
5. The method of claim 1 wherein the flange lock on the flange portion comprises a first flange lock portion and a second flange lock portion positioned opposite the first flange lock portion.
6. The method of claim 1 wherein the removed flange portion is not damaged during the method.
7. The method of claim 1 wherein the method is a manual method.
8. The method of claim 1 wherein the method is an automated method.
9. A method for removing a flange portion of a flanged organic photoconductive (OPC) drum, the method comprising:
providing a used flanged organic photoconductor (OPC) drum having a flange portion and a cylinder portion, the flange portion having a drum cylinder engagement end attached and inserted in a locked position with a flange lock in a first end of the cylinder portion and having a flange projection end;
providing a flange lock unlocking device comprising:
an unlocking portion having a flange projection engagement end; and,
a base portion attached to the unlocking portion;

coupling the flange projection end of the flange portion to the flange projection engagement end of the flange lock unlocking device;
rotating the flange projection end to unlock the flange lock so that the flange portion is in an unlocked position in the first end of the cylinder portion;
providing a flange removal device comprising:
a platform portion;
a flange portion retaining element attached to the platform portion; and,
a drum cylinder portion retaining portion attached to the platform;

securing the unlocked flange portion to the flange portion retaining element;
removing the cylinder portion from the secured unlocked flange portion to obtain a removed cylinder portion and a removed flange portion; and,
assembling the removed flange portion with a replacement OPC drum cylinder portion to obtain a remanufactured flanged OPC drum.
10. The method of claim 9 further comprising installing the remanufactured flanged OPC drum into a laser printer cartridge.
11. The method of claim 9 further comprising discarding the removed cylinder portion.
12. The method of claim 9 wherein the flange portion has a grounding plate with one or more contact portions.
13. The method of claim 9 wherein the flange lock on the flange portion comprises a first flange lock portion and a second flange lock portion positioned opposite the first flange lock portion.
14. The method of claim 9 wherein the removed flange portion is not damaged during the method.
15. The method of claim 9 wherein the method is a manual method.
16. The method of claim 9 wherein the method is an automated method.
17. An organic photoconductor (OPC) drum flange removal assembly for removing a flange portion of a flanged organic photoconductive (OPC) drum, the assembly comprising:
a flange lock unlocking device comprising:
an unlocking portion having a flange projection engagement end; and,
a base portion attached to the unlocking portion; and,

a flange removal device comprising:
a platform portion;
a flange portion retaining element attached to the platform portion; and,
a drum cylinder portion retaining portion attached to the platform,

wherein the flange lock unlocking device unlocks a flange lock on a flange portion of a flanged organic photoconductive (OPC) drum, so that the flange portion is in an unlocked position, and further wherein the flange removal device secures the unlocked flange portion, so that the cylinder portion can be removed from the secured unlocked flange portion to obtain a removed cylinder portion and a removed flange portion.
18. The assembly of claim 17 wherein the flange projection engagement end corresponds in shape and size to a flange projection end on the flange portion.
19. The assembly of claim 17 wherein the assembly is a manual operation assembly.
20. The assembly of claim 17 wherein the assembly is an automated operation assembly.

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 terminal load, comprising:
an insulating housing including:
an insulating cylinder internally defining a receiving space, and having a front end forming an opening and a rear end provided with a notch; and
an insulating cap having a centered third hole and mounted to the opening of the insulating cylinder;

a circuit board being mounted in the receiving space in the insulating cylinder and having a rear end formed into a length of narrowed section to extend through and project from the notch on the rear end of the insulating cylinder;
a connection terminal being electrically connected to a front end of the circuit board to forward extend through the third hole and project from the insulating cap; and
a conductive cap being fitted around the rear end of the insulating cylinder provided with the notch and having a fifth hole formed on a top wall thereof; and the rear narrowed section of the circuit board being extended through the fifth hole to project from the conductive cap.
2. The terminal load as claimed in claim 1, wherein the receiving space in the insulating cylinder internally provides a locating surface, to which the circuit board is mounted to locate in place.
3. The terminal load as claimed in claim 1, wherein the circuit board is provided at the front end with a fourth hole, through which the connection terminal is extended to electrically connect with the circuit board.
4. The terminal load as claimed in claim 1, wherein the conductive cap includes a plurality of clamping surfaces forward extended from and spaced along an outer edge of the top wall to clamp on the insulating housing.
5. The terminal load as claimed in claim 4, wherein the clamping surfaces respectively have two stepped lateral sides and an extended central section; and the extended central sections being fitted around a length of the rear end of the insulating cylinder having the notch formed thereon.
6. The terminal load as claimed in claim 1, wherein the conductive cap further includes two contacting arms rearwardly extended from two opposite sides of the fifth hole to clamp on and get in surface contact with the rear narrowed section of the circuit board.
7. The terminal load as claimed in claim 1, further comprising an outer housing fitted on an outer side of the insulating housing; the outer housing including a barrel portion, a front open end of the barrel portion being expanded in both inner and outer diameters to form an integral locking ring portion, and the locking ring portion being provided on an inner surface with screw threads.