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公开(公告)号:JPH10336019A
公开(公告)日:1998-12-18
申请号:JP9348898
申请日:1998-04-06
Applicant: TANDEM COMPUTERS INC
Inventor: MIROV RUSSELL N , LE DUC NGOC , MIKALAUSKAS FRANK , GREBENKEMPER C JOHN , KWAN KINYING
Abstract: PROBLEM TO BE SOLVED: To obtain clock generator system that generates many clock signals having different frequencies by providing a pair of clock generating units of substantially the same configuration. SOLUTION: A pair of clock generating units of substantially the same configuration 12a (master) and 12b (shadow) are provided. The configuration of the two units 12a and 12b is substantially the same and for example, the master unit 12a receives a clock signal (by way of a buffer 22) being the product of a clock oscillator 20 to input receiving circuits 16 and 18. The circuit 16 directly receives the clock and forms EARLY CLK from there. On the other hand, the circuit 18 receives a clock signal, which is delayed to three nanosecond by a (variable) delay line 24 in spite of the same clock signal and forms a clock signal ON TIME CLOCK from there.
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公开(公告)号:DE69415090T2
公开(公告)日:1999-05-20
申请号:DE69415090
申请日:1994-06-20
Applicant: TANDEM COMPUTERS INC
Inventor: MIROV RUSSELL N , LE DUC NGOC , MIKALAUSKAS FRANK , GREBENKEMPER C JOHN , KWAN KINYING
Abstract: A clock generator system includes two separate, similarly structured clock generator units, operating in lock-step unison, and with the digital clock signal outputs of one of the generator units distributed to the sync, clocked devices and to an error detection circuit, that also receives the digital clock signals from the other clock generator unit for comparison with one another. In the event an error being detected, an error detection circuit produces an error signal to halt operation of the system with which the clock generator system is used, and to reset the clock generator.
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公开(公告)号:AU7052696A
公开(公告)日:1997-01-16
申请号:AU7052696
申请日:1996-10-31
Applicant: TANDEM COMPUTERS INC
Inventor: MIROV RUSSELL N , LE DUC NGOC , MIKALAUSKAS FRANK , GREBENKEMPER C JOHN , KWAN KINYING
Abstract: A clock generator system includes two separate, similarly structured clock generator units, operating in lock-step unison, and with the digital clock signal outputs of one of the generator units distributed to the sync, clocked devices and to an error detection circuit, that also receives the digital clock signals from the other clock generator unit for comparison with one another. In the event an error being detected, an error detection circuit produces an error signal to halt operation of the system with which the clock generator system is used, and to reset the clock generator.
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公开(公告)号:AU6614894A
公开(公告)日:1995-01-12
申请号:AU6614894
申请日:1994-07-01
Applicant: TANDEM COMPUTERS INC
Inventor: MIROV RUSSELL N , KWAN KINYING , GREBENKEMPER C JOHN , MIKALAUSKAS FRANK , LE DUC NGOC
Abstract: A clock generator system includes two separate, similarly structured clock generator units, operating in lock-step unison, and with the digital clock signal outputs of one of the generator units distributed to the sync, clocked devices and to an error detection circuit, that also receives the digital clock signals from the other clock generator unit for comparison with one another. In the event an error being detected, an error detection circuit produces an error signal to halt operation of the system with which the clock generator system is used, and to reset the clock generator.
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公开(公告)号:DE69415090D1
公开(公告)日:1999-01-21
申请号:DE69415090
申请日:1994-06-20
Applicant: TANDEM COMPUTERS INC
Inventor: MIROV RUSSELL N , LE DUC NGOC , MIKALAUSKAS FRANK , GREBENKEMPER C JOHN , KWAN KINYING
Abstract: A clock generator system includes two separate, similarly structured clock generator units, operating in lock-step unison, and with the digital clock signal outputs of one of the generator units distributed to the sync, clocked devices and to an error detection circuit, that also receives the digital clock signals from the other clock generator unit for comparison with one another. In the event an error being detected, an error detection circuit produces an error signal to halt operation of the system with which the clock generator system is used, and to reset the clock generator.
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公开(公告)号:AU684436B2
公开(公告)日:1997-12-11
申请号:AU7052696
申请日:1996-10-31
Applicant: TANDEM COMPUTERS INC
Inventor: MIROV RUSSELL N , LE DUC NGOC , MIKALAUSKAS FRANK , GREBENKEMPER C JOHN , KWAN KINYING
Abstract: A clock generator system includes two separate, similarly structured clock generator units, operating in lock-step unison, and with the digital clock signal outputs of one of the generator units distributed to the sync, clocked devices and to an error detection circuit, that also receives the digital clock signals from the other clock generator unit for comparison with one another. In the event an error being detected, an error detection circuit produces an error signal to halt operation of the system with which the clock generator system is used, and to reset the clock generator.
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公开(公告)号:AU674579B2
公开(公告)日:1997-01-02
申请号:AU6614894
申请日:1994-07-01
Applicant: TANDEM COMPUTERS INC
Inventor: MIROV RUSSELL N , KWAN KINYING , GREBENKEMPER C JOHN , MIKALAUSKAS FRANK , LE DUC NGOC
Abstract: A clock generator system includes two separate, similarly structured clock generator units, operating in lock-step unison, and with the digital clock signal outputs of one of the generator units distributed to the sync, clocked devices and to an error detection circuit, that also receives the digital clock signals from the other clock generator unit for comparison with one another. In the event an error being detected, an error detection circuit produces an error signal to halt operation of the system with which the clock generator system is used, and to reset the clock generator.
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公开(公告)号:CA2124746A1
公开(公告)日:1995-01-03
申请号:CA2124746
申请日:1994-05-31
Applicant: TANDEM COMPUTERS INC
Inventor: MIROV RUSSELL N , LE DUC N , MIKALAUSKAS FRANK , GREBENKEMPER C JOHN , KWAN KINYING
Abstract: 23 MULTIPLE FREQUENCY OUTPUT CLOCK GENERATOR SYSTEM A clock generator system for producing a number of multiple frequency digital clock signals for distribution to a number of synchronous, clocked devices, include two separate, substantially identically structured clock generator units that operate in lock-step unison. The digital clock signal outputs of one of the generator units is distributed to the synchronous, clocked devices and to a error detection circuit, that also receives the digital clock signals from other clock generator unite for comparison with one another. In the event an error is detected, the error detection circuit will produce an error signal to halt operation of the system with which the clock generator system is used, and reset the clock generator.
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