1. A method, comprising:
obtaining, in a thin client device, compressed video information and peripheral configuration information from a server device by way of a network;
decompressing, in the thin client device, the compressed video information;
transmitting the decompressed video information from the thin client device to a display device for display; and
configuring the thin client device to access a peripheral device based at least in part on the peripheral configuration information obtained by the thin client device from the server device, the peripheral device coupled to the thin client device via a peripheral bridge, wherein configuring the thin client device to access the peripheral device comprises:
determining, in the thin client device, whether the peripheral device coupled to the thin client device is permitted to be installed for use through the thin client device based at least in part on the peripheral configuration information; and
installing the peripheral device for use through the thin client device in response to determining the peripheral device is permitted to be installed.
2. The method of claim 1, further comprising:
obtaining, in the thin client device, compressed audio information from the server device by way of the network;
decompressing, in the thin client device, the compressed audio information;
transmitting the decompressed audio information from the thin client device to an audio device.
3. The method of claim 1, wherein the compressed video information includes video information generated by a graphics generator executed in the server device, and at least a portion of the video information results from at least one operation performed by an operating system of the server device.
4. The method of claim 1, further comprising transferring at least a portion of the peripheral configuration information from the thin client device to the peripheral device.
5. The method of claim 1, wherein the obtaining further comprises obtaining the compressed video information by way of the network using a compressed video information communication protocol that is independent from an operating system executing in said server device.
6. The method of claim 1, wherein the peripheral device is a Universal Serial Bus (USB) device.
7. The method of claim 1, further comprising sending a request for permission to install the peripheral device from the thin client device to the server device.
8. The method of claim 1, wherein the server device corresponds to a blade server device.
9. The method of claim 1, further comprising receiving peripheral input information by the thin client device from the peripheral device.
10. The method of claim 9, further comprising sending at least a portion of the peripheral input information from the thin client device to the server device by way of the network.
11. A system, comprising:
a thin client device in communication with a server device by way of a network, the thin client device configured to:
obtain compressed video information and peripheral configuration information from the server device;
decompress the compressed video information;
transmit the decompressed video information to a display device for display; and
configure the thin client device to access a peripheral device based at least in part on the peripheral configuration information obtained from the server device, the peripheral device coupled to the thin client device via a peripheral bridge, wherein the thin client device is configured to:
determine whether the peripheral device coupled to the thin client device is permitted to be installed for use through the thin client device based at least in part on the peripheral configuration information; and
install the peripheral device for use through the thin client device in response to determining that the peripheral device is permitted to be installed.
12. The system of claim 11, wherein the thin client device is further configured to:
obtain compressed audio information from the server device;
decompress the compressed audio information;
transmit the decompressed audio information from the thin client device to an audio device for playback.
13. The system of claim 11, wherein the compressed video information includes video information generated by a graphics generator executed in the server device, and at least a portion of the video information results from at least one operation performed by an operating system of the server device.
14. The system of claim 11, wherein the compressed video information is obtained by way of the network using a compressed video information communication protocol that is independent from an operating system executing in said server device.
15. The system of claim 11, wherein the thin client is further configured to send a request for permission to access the data from the peripheral device.
16. The system of claim 11, wherein the thin client device is further configured to:
receive peripheral input information by the thin client device from the peripheral device; and
send at least a portion of the peripheral input information to the server device.
17. A system, comprising:
means for compressing video information;
means for obtaining a request for permission to install a peripheral device from a thin client device;
means for determining whether the thin client device has permission to install the peripheral device;
means for sending the compressed video information and peripheral configuration information to the thin client device by way of a network, the peripheral configuration information indicating whether the thin client device has permission to install the peripheral device or access data from the peripheral device; and
wherein the thin client device is configured to decompress and display the compressed video information.
18. The system of claim 17, wherein the means for compressing the video information is configured to compress the video information based at least in part on a network capacity associated with the network.
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 dispersion compensating fiber (DCF), which is an amplification medium of an S-band discrete Raman amplifier (RA), comprising:
a trapezoid core wherein the refractive index plotted across the diameter of the trapezoid core as a function of distance is substantially trapezoidal in shape;
an inner cladding surrounding the trapezoid core; and
an outer cladding surrounding the inner cladding,
wherein a ring is disposed between the inner cladding and the outer cladding.
2. (canceled)
3. The dispersion compensating fiber (DCF) according to claim 1, wherein a difference in refractive index between the trapezoid core and the outer cladding is 1.2 to 1.6%, a difference in refractive index between the inner cladding and the outer cladding is 0.4 to 0.8%, and a difference in refractive index between the ring and the outer cladding is 0.2 to 0.6%.
4. The dispersion compensating fiber (DCF) according to claim 1, wherein the thickness of the ring is 0.8 to 1.2 times as much as that of the radius of the trapezoid core, and the thickness of the inner cladding is 1 to 3 times as much as that of the radius of the trapezoid core.
5. The dispersion compensating fiber (DCF) according to claim 1, wherein a Raman gain coefficient per effective area is 6.5 km\u22121 W\u22121 or more, an effective area is 20 \u03bcm2 or less, and a dispersion value in the S-band is \u2212100 to \u2212170 psnmkm.
6. The dispersion compensating fiber (DCF) according to claim 1, wherein a Raman gain coefficient per effective area is 6.5 km\u22121 W\u22121 or more, an effective area is 9 to 11.9 \u03bcm2 or less, and a dispersion value in the S-band is \u2212120 to \u2212150 psnmkm.