Claims
- 1. A network node, comprising:
a. a command link input; b. at least one data link; c. a loopback circuit for selectively routing information received over said command link to said data link; d. a storage medium for receiving a delay value; and e. a controller for controlling transmission time as a function of said delay value on said data link with respect to a reference time:
- 2. The network node of claim 1 in which said controller comprises:
a. a count value latch; and b. a free running counter.
- 3. The network node of claim 1 in which said node further comprises:
a polyphase filter for selectively applying one of plural amounts of group delay to signals applied to said data link.
- 4. The network node of claim 3 in which an amount of group delay applied by said polyphase filter is determined by a signal received over said command link.
- 5. A network node, comprising:
a. a command link output; b. a data link input; and c. a circuit for sending a command over said command link output by which a remote node can be placed into a loopback mode and round trip delay time measured to said remote node and by which a delay value can be sent to said remote node to control the time of transmission of said remote node with respect to a reference time.
- 6. The network node of claim 5, comprising:
a. a pattern generator for sending a pattern on said command line output; and b. a pattern comparitor for determining the amount of shift said pattern experienced when received over said data link input.
- 7. The network node of claim 5 in which a signal indicating the timing of a seismic shot is sent over said command link to permit nodes to synchronize data gathering and transmission to said seismic shot.
- 8. A network, comprising:
a. a plurality of nodes, at least two of which can be placed in a loop back mode, and each node connected to at least one other node; and b. a central node capable of selectively placing other nodes in a loop back mode, measuring roundtrip delay time to said node and setting a delay value in a node to control transmission time of said node as a function of said delay value.
- 9. The network of claim 8, in which the central node further comprises:
c. a pattern generator for sending a pattern on said command line output; and d. a pattern comparitor for determining the amount of shift said pattern experienced when received over said data link input.
- 10. The network of claim 8 in which a signal indicating the timing of a seismic shot is sent over said command link to permit nodes to synchronize data gathering and transmission to said seismic shot.
- 11. The network of claim 8 in which the central node communicates with other nodes using a poll select protocol.
- 12. A method of operating a seismic data gathering network, comprising the step of:
a. equalizing transmission delays from each data gathering node to a central node.
- 13. A method of operating a seismic data gathering network, comprising the step of:
a. synchronizing the timing of data gathering to a signal indicating when a seismic shot occurred.
- 14. A method of operating a seismic data gathering network, comprising the step of:
a. synchronizing the timing of data transmission to a signal indicating when a seismic shot occurred using post decimation filtering phase adjustment.
- 15. An integrated circuit comrising:
a. a command link input; b. at least one data link output; c. a loopback circuit for selectively routing information received over said command link input to said data link output; d. a storage medium for receiving a delay value; and e. a controller for controlling transmission time as a function of said delay value on said data link with respect to a reference time.
- 16. The integrated circuit of claim 15 further comprising:
a polyphase filter for selectively applying one of plural amounts of group delay to signals applied to said data link.
- 17. An integrated circuit comprising:
a. a command link output; b. a data link input; and c. a circuit for sending a command over said command link output by which a remote node can be placed into a loopback mode and round trip delay time measured to said remote node and by which a delay value can be sent to said remote node to control the time of transmission of said remote node with respect to a reference time.
- 18. A program product, comprising:
a. a memory medium; and b. control instructions stored on said memory medium, said control instructions synchronizing the timing of data transmission to a signal indicating when a seismic shot occurred using post decimation filtering phase adjustment.
- 19. A program product, comprising:
a. a memory medium; and b. control instructions stored on said memory medium, said control instructions synchronizing the timing of data gathering to a signal indicating when a seismic shot occurred.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] The invention disclosed herein is related to application Ser. No. ______, Docket No. 0877-CS (50246-032/3171-021) filed ______, by inventors Joel Page, Edwin De Angel, Wai Laing Lee, Lei Wang, Hong Zheng and Chung-Kai Chow and entitled “A POLYPHASE FILTER FOR SELECTIVE PHASE SHIFTING.”
[0002] The invention disclosed herein is related to application Ser. No. ______, Docket No. 0878-CS (50246-033/3171-022) filed ______, by inventors Joel Page, Edwin De Angel, Wai Laing Lee, Lei Wang, Hong Zheng and Chung-Kai Chow and entitled “A SINC FILTER WITH SELECTIVE DECIMATION RATIOS.”
[0003] The invention disclosed herein is related to application Ser. No. ______, Docket No. 0879-CS (50246-034/3171-023) filed ______, by inventors Joel Page, Edwin De Angel, Wai Laing Lee, Lei Wang, Hong Zheng and Chung-Kai Chow and entitled “A SINC FILTER USING TWISTING SYMMETRY.”
[0004] The invention disclosed herein is related to application Ser. No. ______, Docket No. 0880-CS (50246-035/3171-024) filed ______, by inventors Joel Page, Edwin De Angel, Wai Laing Lee, Lei Wang, Hong Zheng, Chung-Kai Chow and entitled “A LINEAR PHASE FIR SINC FILTER WITH MULTIPLEXING.”
[0005] The invention disclosed herein is related to application Ser. No. ______, Docket No. 0882-CS (50246-037/3171-026) filed ______, by inventors Joel Page, Edwin De Angel, Wai Laing Lee, Lei Wang, Hong Zheng and Chung-Kai Chow and entitled “CLOCK ALIGNMENT FOR REDUCED NOISE AND EASY INTERFACING.”
[0006] The invention disclosed herein is related to application Ser. No. ______, Docket No. 0883-CS (50246-038/3171-027) filed ______, by inventors Joel Page, Edwin De Angel, Wai Laing Lee, Lei Wang, Hong Zheng and Chung-Kai Chow and entitled “A CHIP ARCHITECTURE FOR DATA ACQUISITION.”
[0007] The invention disclosed herein is related to application Ser. No. ______, Docket No. 0884-CS (50246-039/3171-028) filed ______, by inventors Joel Page, Edwin De Angel, Wai Laing Lee, Lei Wang, Hong Zheng and Chung-Kai Chow and entitled “SYSTEM AND TECHNIQUES FOR SEISMIC DATA ACQUISITION.”
[0008] The invention disclosed herein is related to application Ser. No. ______, Docket No. 0885-CS (50246-040/3171-029) filed ______, by inventors Joel Page, Edwin De Angel, Wai Laing Lee, Lei Wang, Hong Zheng and Chung-Kai Chow and entitled “POWER ON RESET TECHNIQUES FOR AN INTEGRATED CIRCUIT CHIP.”
[0009] The invention disclosed herein is related to application Ser. No. ______, Docket No. 0886-CS (50246-041/3171-030) filed ______, by inventors Joel Page, Edwin De Angel, Wai Laing Lee, Lei Wang, Hong Zheng and Chung-Kai Chow and entitled “NOISE MANAGEMENT USING A SWITCHED CONVERTER.”
[0010] The invention disclosed herein is related to application Ser. No. ______, Docket No. 0887-CS (50246-042/3171-031) filed ______, by inventors Joel Page, Edwin De Angel, Wai Laing Lee, Lei Wang, Hong Zheng and Chung-Kai Chow and entitled “CORRECT CARRY BIT GENERATION.”
Divisions (1)
|
Number |
Date |
Country |
Parent |
09154242 |
Sep 1998 |
US |
Child |
10457113 |
Jun 2003 |
US |