1460734634-7a109edd-9384-4a52-bf96-da4ab34e755e

1. A portable wireless system, comprising:
a first mobile device configured to communicate with a base station, said first mobile device having a first memory component configured to receive and store a plurality of compressed audio video content
a second mobile device comprising a second memory component and a controller; and
a display accessory in communication with said first mobile device and said second mobile device, comprising,
a controller module configured to operatively communicate with said first mobile device and said second mobile device and receive and process the plurality of stored audio video content through a connection medium,
a local power supply configured to supply energy to display accessory components at minimal capacity of said local power supply,
a display configured to depict video signals received from the controller module and receive sufficient current from the local power supply,
at least one auditory output device configured to process a plurality of audio signals from the controller module and receive sufficient current from the local power supply, and
at least one input device configured to interface with a plurality of wireless devices, such as said first mobile device and said second mobile device;

wherein the controller of the second mobile device shares the computational burden with the controller module of the display accessory.
2. The portable wireless system of claim 1, wherein said plurality of audio video content further comprises a plurality of multi-sectional data packages configured to be downloaded sequentially to the mobile device and reassembled therein.
3. The portable wireless system of claim 2, wherein the connection medium further comprises a wireless communication link.
4. The portable wireless system of claim 2, wherein the connection medium further comprises a wired communication link.
5. The portable wireless system of claim 2, wherein said local power supply is a rechargeable power supply.
6. The portable wireless system of claim 5, wherein said local power supply is further configured to recharge the first mobile device through the connection medium while communicatively coupled.
7. A display accessory in communication with a first mobile device and a second mobile device, comprising,
a controller module configured to operatively communicate with said first mobile device and said second mobile device and receive and process a plurality of compressed stored audio video content through a connection medium,
a local power supply configured to supply energy to display accessory components at minimal capacity of said local power supply, said power supply configured to be rechargeable,
a display configured to depict video signals received from the controller module and receive sufficient current from the local power supply,
at least one auditory output device configured to process a plurality of audio signals from the controller module and receive sufficient current from the local power supply, and
at least one input device configured to interface with a plurality of wireless devices, such as said first mobile device and said second mobile device;
wherein a controller of the second mobile device shares the computational burden with the controller module of the display accessory.
8. The display accessory of claim 7, wherein said local power supply is further configured to recharge the first mobile device through the connection medium while communicatively coupled.
9. The method of claim 7, wherein processing said compressed audio video content on said display accessory further comprises receiving said plurality of compressed audio video content to the controller module, said controller module configured to:
generate a plurality of processed audio signals to at least one auditory output device; and
generate a plurality of rendered video signals to a display.
10. A method for viewing content on a first mobile device with a display accessory comprising:
acquiring a plurality of compressed audio video content through a wireless network;
storing said plurality of compressed audio video content on said first mobile device having a memory component;
interfacing said first mobile device to said display accessory through a connection medium;
accessing the plurality of compressed audio video content on the first mobile device through said connection medium;
transferring said plurality of compressed audio video content through the connection medium from said first mobile device to said display accessory;
enabling a controller to read said plurality of compressed audio video content stored on said first mobile device, said controller module further configured to generate a plurality of rendered video signals and a plurality of processed audio signals, and processing said plurality of compressed audio video content in the controller module; wherein processing said plurality of compressed audio video content comprises processing said plurality of compressed audio video content in a second mobile device, said second mobile device further comprising a controller, the computational burden shared between the controller module of the display accessory and the controller of the second mobile device.
11. The method of claim 10 wherein said acquiring said plurality of compressed audio video content further comprises accessing a data store and downloading said plurality of compressed audio video content.
12. The method of claim 11, wherein said plurality of compressed audio video content comprises a plurality of multi-sectional data packages configured to be downloaded sequentially to the first mobile device and reassembled therein.
13. The method of claim 12, wherein said connection medium further comprises a wired communication link.
14. The method of claim 12, wherein said connection medium further comprises a wireless communication link.
15. The method of claim 12, wherein processing said compressed audio video content on said display accessory further comprises receiving said plurality of compressed audio video content to the controller module, said controller module configured to:
generate a plurality of processed audio signals to at least one auditory output device; and
generate a plurality of rendered video signals to a display.
16. The method of claim 15 wherein said at least one auditory output device is configured to receive and convert said processed audio signals to a correspondent form related to a select auditory output device.
17. The method of claim 16 wherein said display is further configured to receive and convert said rendered video signals to a correspondent form related to the display.

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 compressor, comprising:
a hollow housing including a cylinder head having a suction chamber and a fluid passageway formed therein, a cylinder block having at least one cylinder bore formed therein, and a crankcase, wherein a substantially fluid-tight crank chamber is formed between the cylinder head and the crankcase;
a rotatable driveshaft disposed in and arranged to extend through the crankcase to the cylinder block, the driveshaft including at least one fluid passageway formed therein;
a first fluid flow path fluidly connecting the crank chamber to the suction chamber to facilitate a flow of a working fluid from the crank chamber to the suction chamber, the first fluid flow path including the at least one fluid passageway formed in the driveshaft;
a second fluid flow path fluidly connecting the crank chamber to the suction chamber to facilitate a flow of a mixture of the working fluid and a lubricating fluid from the crank chamber to the suction chamber, the second fluid flow path including the fluid passageway formed in the cylinder head; and
an annular sleeve slideably disposed between the driveshaft and the cylinder block, the annular sleeve selectively positionable to open and close the second fluid flow path.
2. The compressor according to claim 1, further comprising a drive plate assembly having an angle of inclination in respect of a plane substantially perpendicular to a longitudinal axis of the driveshaft.
3. The compressor according to claim 2, wherein the second fluid flow path is closed when the annular sleeve is in a first position and the angle of inclination of the drive plate assembly is maximized.
4. The compressor according to claim 3, wherein the second fluid flow path is open when the annular sleeve is in a second position and the angle of inclination of the drive plate assembly is minimized.
5. The compressor according to claim 2, wherein the second fluid flow path is at least partially open when the annular sleeve is in an intermediate position and the angle of inclination of the drive plate assembly is between a minimum and a maximum.
6. The compressor according to claim 2, wherein the annular sleeve is operatively coupled to the drive plate assembly to slide from a first position of the annular sleeve to a second position of the annular sleeve in response to a decrease in the angle of inclination of the drive plate assembly, and from the second position of the annular sleeve to the first position of the annular sleeve in response to an increase in the angle of inclination of the drive plate assembly.
7. The compressor according to claim 1, wherein the annular sleeve includes an annular recess formed in an inner surface thereof for receiving a lubricant therein, the lubricant providing lubrication to and minimizing friction between the annular sleeve and the driveshaft.
8. The compressor according to claim 1, wherein the annular sleeve includes a surface treatment to minimize friction between the annular sleeve and the cylinder block.
9. The compressor according to claim 1, further comprising a constant flow feature to facilitate a constant flow of the mixture of the working fluid and the lubricating fluid from the crank chamber to the suction chamber.
10. The compressor according to claim 1, further comprising a bearing lubrication feature to facilitate a flow of the mixture of the working fluid and the lubricating fluid around at least one bearing disposed in the cylinder block.
11. A compressor, comprising:
a hollow housing including a cylinder head having a suction chamber and a fluid passageway formed therein, a cylinder block having at least one cylinder bore formed therein, and a crankcase, wherein a substantially fluid-tight crank chamber is formed between the cylinder head and the crankcase;
a rotatable driveshaft disposed in and arranged to extend through the crankcase to the cylinder block, the driveshaft including at least one fluid passageway formed therein;
a rotor fixedly coupled to the driveshaft, wherein a rotational movement of the driveshaft causes a rotational movement of the rotor;
a drive plate assembly coupled to the rotor, the drive plate assembly having an angle of inclination in respect of a plane perpendicular to a longitudinal axis of the driveshaft;
a first fluid flow path fluidly connecting the crank chamber to the suction chamber to facilitate a flow of the working fluid from the crank chamber to the suction chamber, the first fluid flow path including the at least one fluid passageway formed in the driveshaft;
a second fluid flow path fluidly connecting the crank chamber to the suction chamber to facilitate a flow of a mixture of the working fluid and a lubricating fluid from the crank chamber to the suction chamber, the second fluid flow path including the fluid passageway formed in the cylinder head; and
an annular sleeve slideably disposed between the driveshaft and the cylinder block, the annular sleeve selectively positionable to open and close the second fluid flow path, wherein the annular sleeve is operatively coupled to the drive plate assembly to slide from a first position of the annular sleeve to a second position of the annular sleeve in response to a decrease in the angle of inclination of the drive plate assembly from a maximum to a minimum, and to slide from the second position of the annular sleeve to the first position of the annular sleeve in response to an increase in the angle of inclination of the drive plate assembly from the minimum to the maximum.
12. The compressor according to claim 11, wherein the second fluid flow path is closed when the annular sleeve is in the first position.
13. The compressor according to claim 12, wherein the second fluid flow path is open when the annular sleeve is in a second position.
14. The compressor according to claim 11, wherein the second fluid flow path is at least partially open when the annular sleeve is in an intermediate position and the angle of inclination of the drive plate assembly is between the minimum and the maximum.
15. The compressor according to claim 11, wherein the annular sleeve includes an annular recess formed in an inner surface thereof for receiving a lubricant therein, the lubricant providing lubrication to and minimizing friction between the annular sleeve and the driveshaft.
16. The compressor according to claim 11, wherein the annular sleeve includes a surface treatment to minimize friction between the annular sleeve and the cylinder block.
17. The compressor according to claim 11, further comprising a constant flow feature to facilitate a constant flow of the mixture of the working fluid and the lubricating fluid from the crank chamber to the suction chamber.
18. The compressor according to claim 11, further comprising a bearing lubrication feature to facilitate a flow of the mixture of the working fluid and the lubricating fluid around at least one bearing disposed in the cylinder block.
19. A compressor, comprising:
a hollow housing including a cylinder head having a suction chamber and a fluid passageway formed therein, a cylinder block having at least one cylinder bore formed therein, and a crankcase, wherein a substantially fluid-tight crank chamber is formed between the cylinder head and the crankcase;
a rotatable driveshaft disposed in and arranged to extend through the crankcase to the cylinder block, the driveshaft including at least one fluid passageway formed therein;
a rotor fixedly coupled to the driveshaft, wherein a rotational movement of the driveshaft causes a rotational movement of the rotor;
a drive plate assembly coupled to the rotor, the drive plate assembly having an angle of inclination in respect of a plane perpendicular to a longitudinal axis of the driveshaft;
a first fluid flow path fluidly connecting the crank chamber to the suction chamber to facilitate a flow of the working fluid from the crank chamber to the suction chamber, the first fluid flow path including the at least one fluid passageway formed in the driveshaft;
a second fluid flow path fluidly connecting the crank chamber to the suction chamber to facilitate a flow of a mixture of the working fluid and a lubricating fluid from the crank chamber to the suction chamber, the second fluid flow path including the fluid passageway formed in the cylinder head;
an annular sleeve slideably disposed between the driveshaft and the cylinder block, the annular sleeve selectively positionable to open and close the second fluid flow path, wherein the annular sleeve is operatively coupled to the drive plate assembly to slide from a first position of the annular sleeve to a second position of the annular sleeve in response to a decrease in the angle of inclination of the drive plate assembly from a maximum to a minimum, and to slide from the second position of the annular sleeve to the first position of the annular sleeve in response to an increase in the angle of inclination of the drive plate assembly from the minimum to the maximum, wherein the second fluid flow path is closed when the annular sleeve is in the first position and open when the annular sleeve is in the second position;
a constant flow feature fluidly connecting the crank chamber to the suction chamber to facilitate a constant flow of the mixture of the working fluid and the lubricating fluid from the crank chamber to the suction chamber; and
a bearing lubrication feature to facilitate a flow of the mixture of the working fluid and the lubricating fluid around at least one bearing disposed in the cylinder block.
20. The compressor according to claim 19, wherein the annular sleeve includes an annular recess formed in an inner surface thereof for receiving a lubricant therein, the lubricant providing lubrication to and minimizing friction between the annular sleeve and the driveshaft, and a surface treatment to minimize friction between the annular sleeve and the cylinder block.