SMOKE AND FIRE DETECTION SYSTEM COMMUNICATION
    1.
    发明公开
    SMOKE AND FIRE DETECTION SYSTEM COMMUNICATION 失效
    具有数据传输的烟雾和火焰检测系统。

    公开(公告)号:EP0339081A1

    公开(公告)日:1989-11-02

    申请号:EP89900382.0

    申请日:1988-09-16

    IPC分类号: G08B26 H04Q9

    CPC分类号: G08B26/002 H04Q9/14

    摘要: A smoke and fire detection system (10) wherein a central controller (12) transmits data to remote transponders (24, 26) on a voltage supply line (22) by pulse code modulation (PCM) of the supply voltage, and the transponders (24,26) communicate with the controller (12) by pulse width modulated (PWM) current pulses. A transmitter (30) supplies a nomi­ nal operating voltage and transmits a data word that includes plural data bits to the transponders (24, 26) over the line (22) by switching the voltage from the nominal operating voltage to a first voltage corresponding to a first logical level or a sec­ ond voltage corresponding to a second logical level. A decoder (84) in each transponder (24) detects the transition and de­ termines the logical level of each bit by measuring the transmitted voltage level immediately after detecting the transition. The transponder (24) returns data signals to the controller (12) having a duration based on the data to be returned.

    SMOKE AND FIRE DETECTION SYSTEM COMMUNICATION
    2.
    发明授权
    SMOKE AND FIRE DETECTION SYSTEM COMMUNICATION 失效
    具有数据传输的烟雾和火焰检测系统。

    公开(公告)号:EP0339081B1

    公开(公告)日:1994-12-14

    申请号:EP89900382.6

    申请日:1988-09-16

    IPC分类号: G08B26/00 G08B23/00

    CPC分类号: G08B26/002 H04Q9/14

    摘要: A smoke and fire detection system (10) wherein a central controller (12) transmits data to remote transponders (24, 26) on a voltage supply line (22) by pulse code modulation (PCM) of the supply voltage, and the transponders (24, 26) communicate with the controller (12) by pulse width modulated (PWM) current pulses. A transmitter (30) supplies a nominal operating voltage and transmits a data word that includes plural data bits to the transponders (24, 26) over the line (22) by switching the voltage from the nominal operating voltage to a first voltage corresponding to a first logical level or a second voltage corresponding to a second logical level. A decoder (84) in each transponder (24) detects the transition and determines the logical level of each bit by measuring the transmitted voltage level immediately after detecting the transition. The transponder (24) returns data signals to the controller (12) having a duration based on the data to be returned.