1. An apparatus to stream telephony data comprising:
a computer telephony bus connector adapted for coupling to at least one computer telephony bus associated with a computer telephony board, and for receiving streamed telephony data from the computer telephony board;
a computer interface for plugging into a standard personal computer interface connector and adapted for coupling to a host processor for streaming telephony data from the apparatus to the host processor;
a bus switching application specific integrated circuit electrically coupled to the computer telephony bus connector to provide a switching matrix for the computer telephony bus to gain access to telephony data;
a control processor and associated logic for processing the streamed telephony data and directing same to the computer interface; and
a memory for temporarily storing streamed telephony data.
2. The apparatus of claim 1, wherein the telephony data is at least one of pulse code modulation data and time division multiplexing data.
3. The apparatus of claim 2, wherein the control processor formats the telephony data to resemble a memory device.
4. The apparatus of claim 3, wherein the control processor initiates a data transfer request to the host processor to transfer the telephony data, and the host processor responds with a data transfer grant when it is ready.
5. The apparatus of claim 1, wherein the computer interface is at least one of an Intelligent Drive Electronics interface, a hard disk drive Small Computer System Interface, a Dual In-line Memory Module interface, and a Single In-line Memory Module.
6. A computer telephony system to stream telephony data, comprising:
a motherboard;
a host processor coupled to the motherboard;
at least one computer telephony board, located on the motherboard, having at least one computer telephony bus, joined via a connector;
a circuit substrate layer, located on the motherboard, having access to telephony data time slots and having a computer telephony bus connector, a computer telephony bus switching application specific integrated circuit, a control processor, memory, and associated logic, and at least one computer interface.
7. The computer telephony system of claim 6, wherein the telephony data is at least one of pulse code modulation data and time division multiplexing data.
8. The computer telephony system of claim 6, wherein the control processor receives the telephony data from the computer telephony bus connector.
9. The computer telephony system of claim 8, wherein the control processor formats the telephony data to resemble a memory device.
10. The computer telephony system of claim 9, wherein the control processor initiates a data transfer request to the host processor to transfer the telephony data, and the host processor responds with a data transfer grant when it is ready.
11. The computer telephony system of claim 6, wherein the computer telephony bus switching application specific integrated circuit connects to the computer telephony bus connector and provides a switching matrix for the computer telephony bus to gain access to telephony data.
12. The computer telephony system of claim 6, wherein the computer interface is at least one of an Intelligent Drive Electronics interface, a hard disk drive Small Computer System Interface, a Dual In-line Memory Module interface, and a Single In-line Memory Module interface.
13. The computer telephony system of claim 12, wherein the at least one the Intelligent Drive Electronics interface, the hard disk drive Small Computer System Interface, the Dual In-line Memory Module interface, and the Single In-line Memory Module interface stream the telephony data to the host processor.
14. A method of streaming telephony data, comprising:
receiving telephony data via a computer telephony bus;
employing a control processor on a circuit substrate layer to take the telephony data from the computer telephony bus and format it to resemble a memory device;
initiating a data transfer of the telephony data to a host processor;
using the circuit substrate layer to stream the telephony data to the host processor via a computer interface.
15. The method of claim 14, wherein the telephony data is at least one of pulse code modulation data and time division multiplexing data.
16. The method of claim 14, wherein the computer interface is at least one of an Intelligent Drive Electronics interface, a hard disk drive Small Computer System Interface, a Dual In-line Memory Module interface, and a Single In-line Memory Module interface.
17. The method of claim 16, wherein the circuit substrate layer contains separate assemblies for each of the Intelligent Drive Electronics interface, the hard disk drive Small Computer System Interface, the Dual In-line Memory Module interface, and the Single In-line Memory Module interface.
18. The method of claim 14, wherein a direct memory access is initiated to conduct the data transfer.
19. A system to stream telephony data to a host processor comprising a computer readable medium and a computer readable program code stored on the computer readable medium and executable by a computer, said computer readable program code having instructions to:
receive telephony data via a computer telephony bus;
format the telephony data to resemble a memory device by employing a control processor on a circuit substrate layer to take the telephony data from the computer telephony bus;
initiate a data transfer of the telephony data to a host processor;
stream the telephony data to the host processor via a computer interface by using the circuit substrate layer.
20. The system of claim 19, wherein the telephony data is at least one of pulse code modulation data and time division multiplexing data.
21. The system of claim 19, wherein instructions are provided to a control processor to format the telephony data.
22. The system of claim 19, wherein instructions are provided to a circuit substrate layer to stream the telephony data to the host processor.
23. The system of claim 19, wherein the computer interface is one of an Intelligent Drive Electronics interface, a hard disk drive Small Computer System Interface, a Dual In-line Memory Module interface, and a Single In-line Memory Module interface.
24. The system of claim 19, wherein a direct memory access is initiated to transfer the telephony data.
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 silicone urisheath having an outer surface and an inner surface, the silicone urisheath comprising:
an annular inner band of oxidized silicone forming the inner surface of the urisheath;
an outermost annular band of non-oxidized silicone that forms the outer surface of the silicone urisheath; and
a pressure sensitive skin adhesive that is disposed on the annular inner band of oxidized silicone.
2. The silicone urisheath according to claim 1, wherein the annular inner band is formed by an oxidative process selected from the group consisting of oxidative-heat treatment, UV light, E-beam, gamma-irradiation, and chemical oxidative treatment.
3. The silicone urisheath according to claim 1, wherein the annular inner band is formed by an oxidative-heat treatment selected from the group consisting of corona treatment, plasma treatment, and flame treatment.
4. The silicone urisheath according to claim 1, wherein the pressure sensitive skin adhesive is a polar adhesive material.
5. The silicone urisheath according to claim 4, wherein the polar adhesive material is based on acrylics, polyether, polyvinylether, polyurethane, or polyvinylpyrolidone.
6. The silicone urisheath according to claim 1, wherein the pressure sensitive skin adhesive is an acrylic pressure sensitive adhesive.
7. A urisheath comprising:
a body formed of silicone material, the body having a cylindrical shape defining an innermost surface, an outermost surface, wall a thickness between the innermost and outermost surfaces, a first end, a second end and a length between the first and second ends, the body including:
an annular inner band of oxidized silicone material defined along the length at the innermost surface that extends from the innermost surface partially into the wall thickness of the body;
an annular outer band of non-oxidized silicone material defined along the length at the outermost surface; and
a pressure sensitive skin adhesive that is disposed on the annular inner band of oxidized silicone.
8. The urisheath of claim 7, wherein the annular inner band of oxidized silicone material is defined along an entire length of the body such that the annular inner band extends along all of the length of the body between the first end and the second end.
9. The urisheath of claim 7, wherein the annular inner band of oxidized silicone material is defined along a partial length of the body such that the annular inner band extends along a portion of the length of the body between the first end and the second end.
10. The silicone urisheath according to claim 7, wherein the annular inner band is formed according to an oxidative process including at least one of oxidative-heat treatment, UV light, E-beam, gamma-irradiation, and chemical oxidative treatment.
11. The silicone urisheath according to claim 7, wherein the annular inner band is formed according to an oxidative-heat treatment including at least one of corona treatment, plasma treatment, and flame treatment.
12. The silicone urisheath according to claim 7, wherein the pressure sensitive skin adhesive includes a polar adhesive material.
13. The silicone urisheath according to claim 7, wherein the pressure sensitive skin adhesive is formed of a material having a base polymer including at least one of an acrylic, a polyether, a polyvinylether, a polyurethane, and a polyvinylpyrolidone base polymer.
14. The silicone urisheath according to claim 7, wherein the pressure sensitive skin adhesive includes an acrylic based pressure sensitive adhesive.
15. A urisheath comprising:
a body formed of silicone material, the body having a cylindrical shape defining an innermost surface, an outermost surface, wall a thickness between the innermost and outermost surfaces, a first end, a second end and a length between the first and second ends, the body including:
an annular inner band of oxidized silicone material that has been treated with an oxidative process to form an oxidized band of silicone material into the innermost surface that extends from the innermost surface partially into the wall thickness of the body;
an annular outer band of non-oxidized silicone material defined along the length at the outermost surface; and
a pressure sensitive skin adhesive that is disposed on the oxidized band of silicone material.
16. The urisheath of claim 15, wherein the annular inner band of oxidized silicone material is defined along an entire length of the body such that the annular inner band extends along all of the length of the body between the first end and the second end.
17. The urisheath of claim 15, wherein the annular inner band of oxidized silicone material is defined along a partial length of the body such that the annular inner band extends along a portion of the length of the body between the first end and the second end.