1460744778-21360822-e20c-4e43-be18-905453524fef

What is claimed is:

1. A cover structure for a main case of a shredder, comprising a plastic injection molded lower box and an plastic injection molded upper box board, wherein the lower box defines a plurality of grooves and pegs for encasing a machinery core, including a motor, a gear assembly, cutters, a feeding switch and an autooffrev switch AORS, wherein fixing between the lower cover and the upper cover board is achieved by cover a basic fastening structure andor a strengthened fastening structure.
2. The cover structure for a main case of a shredder according to claim 1, wherein the basic fastening structure comprises: a plurality of locating holes provided on a latitudinal front perimeter, a latitudinal rear perimeter, or front and rear perimeters of the lower box, barbed fasteners protruding down from a latitudinal perimeter of the upper board at locations corresponding to where the location holes of the lower box are provided.
3. The cover structure for a main case of a shredder according to claim 1, wherein the strengthened fastening structure comprises a larger area locating groove provided on a turning part joining a longitudinal perimeter and a handle part of the lower box, a barbed fastening tab protruding down from the upper cover board at a location corresponding to where the location groove of the lower box is provided.
4. The cover structure for a main case of a shredder according to claim 1, wherein the locating groove provided on the turning part joining the longitudinal perimeter and the handle part of the lower box and the strengthened fastening structure including the barbed retaining tab formed on the upper cover board corresponding to the location groove are selectively provided.

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 computer system for performing enterprise modeling, comprising:
a data organizer coupled for receiving a primary set of data, wherein the data organizer parses the primary set of data into predefined sets of data components according to processing requirements of a plurality of enterprise models;
a plurality of data sources coupled to an output of the data organizer, wherein each of the plurality of data sources store at least one of the predefined sets of data components from the data organizer;
a plurality of data processing systems each executing at least one of the plurality of enterprise models; and
a plurality of communication channels respectively coupled between the plurality of data sources and the plurality of data processing systems for routing the predefined set of data components to the data processing system which executes a corresponding one of the plurality of enterprise models.
2. The computer system of claim 1, wherein a first one of the plurality of enterprise models uses a first predefined set of data components.
3. The computer system of claim 2, wherein the data organizer extracts the first predefined set of data components from the primary set of data.
4. The computer system of claim 3, wherein the first predefined set of data components is stored on a first one of the plurality of data sources.
5. The computer system of claim 4, wherein the first predefined set of data components is organized on the first one of the plurality of data sources as a binary file or a hierarchical file.
6. The computer system of claim 4, wherein the first predefined set of data components is organized on the first one of the plurality of data sources as a data structure in computer memory.
7. The computer system of claim 1, wherein each of the predefined sets of data components includes only data which is used by the corresponding one of the plurality of enterprise models.
8. A method of accessing data for performing enterprise modeling, comprising:
parsing a primary set of data into predefined sets of data components according to processing requirements of a plurality of enterprise models;
storing the predefined sets of data components in a plurality of data sources;
executing at least one of the plurality of enterprise models on each of a plurality of data processing systems; and
routing the predefined sets of data components from the plurality of data sources to the plurality of data processing systems which execute the corresponding enterprise models.
9. The method of claim 8, further including utilizing a first predefined set of data components to execute a first one of the plurality of enterprise models.
10. The method of claim 9, further including storing the first predefined set of data components in a first one of the plurality of data sources.
11. The method of claim 10, wherein the first predefined set of data components is stored on the first one of the plurality of data sources as a binary file or a hierarchical file.
12. The method of claim 10, wherein the first predefined set of data components is stored on the first one of the plurality of data sources as a data structure in computer memory.
13. The method of claim 10, further including routing the first predefined set of data components from the first one of the plurality of data sources over a first one of the plurality of communication channels to a first one of the plurality of data processing systems.
14. A computer system for performing data processing, comprising:
a data organizer coupled for receiving a primary set of data, wherein the data organizer creates a first predefined set of data components from the primary set of data;
a first data source coupled to the data organizer, wherein the data source stores the first predefined set of data components;
a first data processing system executing a first application; and
a first communication channel coupled between the first data source and the first data processing system for routing the first predefined set of data components to the first data processing system.
15. The computer system of claim 14, wherein the first application uses only the first predefined set of data components.
16. The computer system of claim 14, further including a second data source coupled to the data organizer for storing a second predefined set of data components created from the primary set of data.
17. The computer system of claim 16, further including:
a second data processing system executing a second application; and
a second communication channel for routing the second predefined set of data components to the second data processing system.
18. The computer system of claim 14, wherein the first predefined set of data components is organized on the first data source as a binary file or a hierarchical file.
19. The computer system of claim 14, wherein the first predefined set of data components is organized on the first data source as a data structure in computer memory.
20. A data processing system, comprising:
a data organizer coupled for receiving a primary set of data, wherein the data organizer organizes a set of data components from the primary set of data;
a data source coupled to the data organizer for storing the set of data components; and
a data processing system coupled to the data source for receiving and processing the set of data components.
21. The data processing system of claim 20, further including a communication channel coupled between the data source and the data processing system.
22. The data processing system of claim 20, wherein the data processing system executes a first application.
23. The data processing system of claim 23, wherein the first application uses only a first set of data components.
24. The data processing system of claim 20, wherein the data processing system executes one of a plurality of applications.
25. The data processing system of claim 24, further including a task manager coupled to the data processing system for controlling the plurality of applications.
26. The data processing system of claim 25, wherein the data source includes a plurality of storage locations for storing each of the sets of data components.
27. The data processing system of claim 26, further including a plurality of communication channels coupled between the plurality of data processing systems and the plurality of storage locations.
28. The data processing system of claim 26, wherein the plurality of data processing systems can access the plurality of storage locations over one or more communication channels.
29. The data processing system of claim 20, wherein the sets of data components are organized on the data source as a binary file or a hierarchical file.
30. The data processing system of claim 20, wherein the sets of data components are organized on the data source as a data structure in computer memory.
31. A computer system for data processing, comprising:
a data organizer coupled for receiving a primary set of data, wherein the data organizer organizes a set of data components from the primary set of data;
a plurality of data sources in communication with the data organizer for storing the set of data components; and
a plurality of data processing systems each coupled to one or more of the plurality of the data sources for receiving and processing the set of data components through an application.
32. The computer system of claim 31, further including a communication network coupled between the plurality of data sources and the plurality of data processing systems.
33. The computer system of claim 32, wherein the plurality of data processing systems can access the plurality of data sources on one or more communication channels over the communication network.
34. The computer system of claim 31, wherein the set of data components are organized on the plurality of data sources as a binary file or a hierarchical file.
35. The computer system of claim 31, wherein the set of data components are organized on the plurality of data sources as a data structure in computer memory.
36. A method of accessing data in a data processing system, comprising:
creating a first set of data components from a primary set of data according to a first application;
storing the first set of data components in a data source; and
routing the first set of data components from the data source to a data processing system for executing the first application.
37. The method of claim 36, further including providing a communication channel between the data source and the data processing system.
38. The method of claim 36, wherein the first set of data components is organized on the data source as a binary file or a hierarchical file.
39. A computer program product usable with a programmable computer processor having a computer readable program code embodied therein, comprising:
computer readable program code which parses a primary set of data into predefined sets of data components according to processing requirements of a plurality of enterprise models;
computer readable program code which stores the predefined sets of data components in a plurality of data sources;
computer readable program code which executes at least one of the plurality of enterprise models on each of a plurality of data processing systems; and
computer readable program code which routes the predefined sets of data components from the plurality of data sources to the plurality of data processing systems which execute the corresponding enterprise models.
40. A computer system for accessing data for a data processing system in large enterprise application, comprising:
means for creating a first set of data components from a primary set of data according to a first application;
means for storing the first set of data components in a data source; and
means for routing the first set of data components from the data source to a data processing system for executing the first application.
41. A method of processing data for enterprise modeling, comprising:
receiving bulk data;
parsing the bulk data for storage on a plurality of data sources customized to an end application; and
indexing the parsed data for access in accordance with data demands of the end application.
42. The method of claim 41, wherein the parsed data in indexed and stored on a first one of the plurality of data sources as a binary file or a hierarchical file.
43. A method of executing enterprise models in a data processing system, comprising:
creating a job to run a portion of an enterprise model;
matching the job to available data processing capacity; and
scheduling the job to execute on the available data processing capacity.