1460717512-fedb3ae7-9163-4cae-9daf-8324d7ffe093

1. A virtual tape volume employment method in a computer employing virtual tape volumes obtained by virtually emulating a magnetic tape in a disk device, the method comprising the steps of:
identifying the virtual tape volumes by a volume serial number referenced by a job and medium identifiers corresponding to different media belonging to the serial number;
grouping the virtual tape volumes corresponding to one job execution unit and giving to each group a magazine identifier for identifying the group;
giving a virtual tape data set name to each tape data set when a virtual tape data set is created in the virtual tape volumes and correlating the virtual tape data set name with the volume serial number of a virtual tape data set output medium to which the virtual tape data set is output.
2. A virtual tape volume employment method as claimed in claim 1, the method further comprising a step of:
acquiring the virtual tape volume according to the magazine identifier corresponding to the job upon execution of the job and performing a data IO processing for the virtual tape data set corresponding to the acquired virtual tape volume.
3. A virtual tape volume IO method in a computer performing a data IO processing for virtual tape volumes obtained by virtually emulating a magnetic tape in a disk device, the method comprising the steps of:
storing a first management table for performing management by identifying the virtual tape volumes by a volume serial number referenced by a job and medium identifiers corresponding to different media belonging to the serial number, grouping the virtual tape volumes corresponding to one job execution unit, and giving to each group a magazine identifier for identifying the group;
storing a second management table for giving a virtual tape data set name to each tape data set when a virtual tape data set is created in the virtual tape volumes correlating the virtual tape data set name with the volume serial number of a virtual tape data set output medium to which the virtual tape data set is output;
storing a third management table for performing management by correlating a job name with a magazine identifier of a virtual tape magazine;
acquiring a magazine identifier corresponding to the job name according to the third management table;
acquiring virtual tape volumes corresponding to the magazine identifier according to the first management table;
acquiring a virtual tape data set name corresponding to the virtual tape volumes according to the second management table; and
performing a data IO processing tofrom the virtual tape data set having the virtual tape data set name acquired.
4. A computer-readable storage medium storing a program for executing the virtual tape volume employment method as claimed in claim 1.
5. A computer-readable storage medium storing a program for executing the virtual tape volume employment method as claimed in claim 3.

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

What is claimed is:

1. A method for performing automated unbundled network element migration, the method comprising:
receiving a disconnect order for an existing telephone service wherein said existing telephone service is provided by a first exchange carrier;
receiving a connect order for a new telephone service wherein said new telephone service is provided by a second exchange server;
installing a test cable to simulate said new telephone service;
verifying that said test cable performs correctly, wherein said verifying includes executing a test on said test cable responsive to a test instruction from a migration software application;
deactivating said existing telephone service, wherein said deactivating is automated in response to a deactivation command from said migration software application and is responsive to said verifying; and
activating said test cable to provide said new telephone service, wherein said activating is automated in response to an activation command from said migration software application and in response to said deactivating.
2. The method of claim 1 wherein said first exchange carrier is an incumbent local exchange carrier.
3. The method of claim 1 wherein said second exchange carrier is a competitive local exchange carrier.
4. The method of claim 1 wherein said test cable includes a jumper cable.
5. The method of claim 1 wherein said test cable includes a half tap jumper cable.
6. The method of claim 1 wherein said test includes checking that a voice switch associated with said new telephone service is properly configured.
7. The method of claim 1 wherein said test includes checking that there are no shorts in any new telephone service connections.
8. The method of claim 1 wherein said test includes checking that said test cable is in the correct ports.
9. The method of claim 1 wherein said test includes pre-qualifying the migrated facilities for high-speed services.
10. The method of claim 1 wherein said test includes pre-testing for fault isolation.
11. The method of claim 1 wherein said verifying further includes:
receiving result data in response to said executing a test;
evaluating said result data; and
reporting the results of said evaluating.
12. The method of claim 11 wherein said verifying further includes performing error analysis and correction in response to said evaluating.
13. The method of claim 1 wherein said activating is initiated within a pre-selected time interval of initiating said deactivating.
14. The method of claim 13 wherein said pre-selected time interval is ten seconds.
15. The method of claim 1 further comprising:
combining said disconnect order and said connect order into a work order including migration steps and deadlines;
transmitting said work order into a management database, wherein said management database includes a plurality of said work orders.
16. The method of claim 15 further comprising creating a template for said work order.
17. The method of claim 15 wherein said combining is performed by said migration software application in response to said receiving a disconnect order and to said receiving a connect order.
18. The method of claim 15 further comprising:
executing a query against said management database; and
receiving a report in response to said query.
19. The method of claim 18 wherein said report includes one or more said work orders and the overall status of each said work order.
20. The method of claim 18 wherein said report includes one said work order and the status of each said migration step in said work order.
21. The method of claim 1 further comprising performing error analysis and correction after said deactivating and said activating.
22. A system for providing automated unbundled network element migration, the system comprising:
a network;
an existing telephone service voice switch in communication with said network;
an existing telephone service main distribution frame in communication with said existing telephone service voice switch;
a customer telephone in communication with said existing telephone service main distribution frame;
a new telephone service voice switch;
a remote cross connection device in communication with said new telephone service voice switch and with said network;
a new telephone service main distribution frame in communication with said remote cross connection device;
a deactivated test cable in communication with said existing telephone service main distribution frame and said new telephone service main distribution frame; and
a host system in communication with said network and including instructions to implement a method comprising:
receiving a disconnect order for said existing telephone service via said network, wherein said existing telephone service is provided by a first exchange carrier;
receiving a connect order for said new telephone service via said network wherein said new telephone service is provided by a second exchange carrier;
verifying that said test cable performs correctly, wherein said verifying includes executing a test on said test cable responsive to a test instruction from a migration software application located on said host system;
deactivating said existing telephone service, wherein said deactivating is automated in response to a deactivation command from said migration software application and is responsive to said verifying; and
activating said test cable to provide said new telephone service, wherein said activating is automated in response to an activation command from said migration software application and in response to said deactivating.
23. The system of claim 22 wherein said deactivating includes disabling said communication between said existing telephone service voice switch and said existing telephone service main distribution frame.
24. The system of claim 22 wherein said activating includes activating communication between said existing telephone service main distribution frame and said new telephone service main distribution frame.
25. The system of claim 22 wherein said first exchange carrier is an incumbent local exchange carrier.
26. The system of claim 22 wherein said second exchange carrier is a competitive local exchange carrier.
27. The system of claim 22 wherein said test cable includes a jumper cable.
28. The system of claim 22 wherein said test cable includes a half tap jumper cable.
29. The system of claim 22 wherein said network is the Internet.
30. The system of claim 22 wherein remote cross connection device is a Turnstone MX500.
31. A computer program product for providing automated unbundled network element migration, the computer program product comprising:
a storage medium readable by a processing circuit and storing instructions for execution by the processing circuit for performing a method comprising:
receiving a disconnect order for an existing telephone service wherein said existing telephone service is provided by a first exchange carrier;
receiving a connect order for a new telephone service wherein said new telephone service is provided by a second exchange carrier;
installing a test cable to simulate said new telephone service;
verifying that said test cable performs correctly, wherein said verifying includes executing a test on said test cable responsive to a test instruction from a migration software application;
deactivating said existing telephone service, wherein said deactivating is automated in response to a deactivation command from said migration software application and is responsive to said verifying; and
activating said test cable to provide said new telephone service, wherein said activating is automated in response to an activation command from said migration software application and in response to said deactivating.

1460717504-9a960311-8969-449d-9b56-e9816fd1d2ae

1. Shielding element for electric andor electronic components of an electric andor electronic circuit, comprising:
an annular side wall (11) for surrounding those elements (25) of a circuit that have to be shielded against electromagnetic radiation, said side wall (11) defining a bottom and a ceiling opening (15), and
a cover (12, 12\u2032) for closing the ceiling opening (15), characterized, in that
said cover (12, 12\u2032) is detachable attached to said side wall (11) by joint means that comprises a predetermined breaking line and has to be destroyed for detaching said cover (12, 12\u2032) from said side wall (11), and
said predetermined breaking line is formed in an overlapping area of said cover (12, 12\u2032) and said side wall (11).
2. Shielding element as claimed in claim 1, characterized in that said cover (12\u2032) is provided with a peripheral flange (19) extending substantially perpendicular to its main surface and forming said portion for overlapping said annular side wall (11).
3. Shielding element as claimed in claim 2, characterized in that said annular side wall is provided with an annular flange (14) extending into said ceiling opening (15) and forming said portion to be overlapped by said cover (12).
4. Shielding element as claimed in claim 2, characterized in that said breaking line (26) is formed by spot-welding said cover (12, 12\u2032) to said annular side wall (11) in said overlapping area.
5. Shielding element as claimed in claim 2, characterized in that said breaking line (26) is formed by soldering said cover (12, 12\u2032) to said annular side wall (11) in said overlapping area.
6. Shielding element as claimed in claim 2, characterized in that said breaking line is formed by gluing said cover (12\u2032, 12) to said annular side wall (11) in said overlapping area.
7. Shielding element as claimed in claim 2, characterized in that said cover (12, 12\u2032) is provided with tear open means (16, 18) for removing said cover (12, 12\u2032) from said side wall (11) to open said ceiling opening (15).
8. Shielding element as claimed in claim 7, characterized in that said cover (12) is provided with a tongue (16) for engaging a tear open tool.
9. Shielding element as claimed in claim 8, characterized in that a tear off wire or strap (18) is integrated into said predetermined breaking line (26) formed by gluing.
10. Shielding element for electric andor electronic components of an electric andor electronic circuit, comprising:
an annular side wall (11) for surrounding those elements (25) of a circuit that have to be shielded against electromagnetic radiation, said side wall (11) defining a bottom and a ceiling opening (15), and
a cover (12) for closing the ceiling opening (15),

wherein
said annular side wall (11) and said cover (12) are defined as parts of an integral cap (23) by a predetermined breaking line (26),

characterized, in that
said predetermined breaking line (26) is formed by two parallel notches (21) andor perforations (29) to define a tear open strap (31).
11. Shielding element as claimed in claim 10, characterized in that said two parallel notches (21) are both formed in one surface of said cap (23).
12. Shielding element as claimed in claim 11, characterized in that said cover (12) is provided with an engaging element (27, 34), for being engaged by a tear open tool.
13. Shielding element as claimed in claim 11, characterized in that said engaging element is formed by a hole (27) for insert of a tear open tool.
14. Shielding element as claimed in claim 11, characterized in that said engaging element is formed by a tongue (34) defined by said predetermined breaking line or lines (26, 26\u2032).
15. Shielding element as claimed in claim 13, characterized in that said predetermined breaking line (26) is provided in a side wall portion (11) adjacent to an upper edge thereof.
16. Shielding element as claimed in claim 14, characterized in that said predetermined breaking line (26) is provided in cover (12) portion adjacent to its peripheral edge.

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 torque socket, comprising:
a shaft rod, one end thereof being axially formed with an insertion tenon having a non-round cross section, the other end being axially extended with a core shaft formed with at least a cut groove transversally on a surface and radially and protrudingly formed with a flange part; and
a shaft cylinder, two axial ends thereof being respectively formed with a shaft slot having a round cross section and a sleeve slot having a non-round cross section, wherein said shaft slot being a stepped hole having the dimension slightly smaller than said core shaft and allowing said core shaft to be inserted therein, said shaft slot being formed with a buckle part corresponding to the location of said flange part for buckling said flange part, and the interior of said shaft slot being radially and protrudingly formed with a friction segment for tightening said core shaft, thereby forming a preset torque value between said core shaft and said shaft slot.
2. The torque socket as claimed in claim 1, wherein a magnet is disposed in said sleeve slot.
3. The torque socket as claimed in claim 1, wherein said core shaft is axially formed with a rod hole in communication with a cut groove, and lubrication oil is provided in said rod hole.
4. The torque socket as claimed in claim 1, wherein said core shaft is formed with an oil storage zone at the periphery of each cut groove.
5. The torque socket as claimed in claim 1, wherein a free end of said insertion tenon of said core shaft is formed with a chamfer part, a guide surface is formed at the inlet periphery of said sleeve slot.
6. The torque socket as claimed in claim 1, wherein a ring sheet is radially formed between said insertion tenon and said core shaft.
7. The torque socket as claimed in claim 1, wherein said insertion tenon is inserted in an insertion slot of a connection rod formed at the bottom of a manual, pneumatic or electric rotation tool, and said sleeve slot allows a sleeve rod of a drive head to be sleeved and positioned, the free end of said drive head is installed with a tenon head having a geometric shape.