Claims
- 1. A kit for determining connection pattern of data ports which are interconnected by standardized multiconductor cables, said data ports each having a standardized socket, and said multiconductor cables each having a standardized jack at each end of the cable which mates with said socket, said kit comprising:a plurality of adapter boards having a plurality of socket contacts, said adapter boards to be placed adjacent to said socket; a plurality of adapter jackets to be fitted over said standardized jack, each of said adapter jackets having an external contact for electrically connecting with said socket contacts when said adapter jacket is fitted over said standardized jack and said standardized jack is mated with said standardized socket; output signal drivers to be uniquely coupled to each socket contact, said output drivers being operative to send a signal to said socket contact; input signal receivers to be uniquely coupled to each said socket contact for receiving said signal sent by said output signal drivers; a micro-processor to be coupled to said output signal drivers and said input signal receivers for controlling said signal sent by said output signal drivers and for detecting signals received by said input signal receivers, said micro-processor interpreting said signals to determine the connection pattern of said data ports; and an output indicator coupled to said micro-processor for indicating the connection pattern of said data ports as determined by said micro-processor.
- 2. The kit as recited in claim 1 wherein said microprocessor determines the connection pattern of said data ports by sending a signal to a socket contact and determining which of the input signal receivers have received the signal, and repeating the process for every socket contact.
- 3. A kit for determining connection pattern of data ports, said data ports each having a standardized socket, said kit comprising:a plurality of adapter boards having a plurality of socket contacts, said adapter boards to be placed adjacent to said socket; a plurality of multiconductor cables, said cables having a standardized jack at each end, each of said jacks having an external contact for electrically connecting with said socket contacts when said jack is mated with said socket; output signal drivers to be uniquely coupled to each socket contact, said output drivers being operative to send a signal to said socket contact; input signal receivers to be uniquely coupled to each said socket contact for receiving said signal sent by said output signal drivers; a micro-processor to be coupled to said output signal drivers and said input signal receivers for controlling said signal sent by said output signal drivers and for detecting signals received by said input signal receivers, said micro-processor interpreting said signals to determine the connection pattern of said data ports; and an output indicator coupled to said micro-processor for indicating the connection pattern of said data ports as determined by said micro-processor.
- 4. The kit as recited in claim 3 wherein said microprocessor determines the connection pattern of said data ports by sending a signal to a socket contact and determining which of the input signal receivers have received the signal, and repeating the process for every socket contact.
Priority Claims (2)
Number |
Date |
Country |
Kind |
9901521 |
Apr 1999 |
SG |
|
200001891 |
Apr 2000 |
SG |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a division of U.S. application Ser. No. 09/937,983, filed Oct. 3, 2001, entitled A System for Monitoring Connection Pattern of Data Ports, which issued as U.S. Pat. No. 6,574,586 on Jun. 3, 2003, and which is the National Stage of International Application No. PCT/SG00/00045, filed Apr. 5, 2000, which claims priority to Singapore Patent Application Nos. 9901521-6, filed Apr. 6, 1999, and 200001891-1, filed Apr. 5, 2000.
US Referenced Citations (12)
Foreign Referenced Citations (2)
Number |
Date |
Country |
201415 |
Oct 1990 |
HU |
216212 |
May 1999 |
HU |