IL211373A

Method and apparatus for connecting ac powered switches, current sensors and control devices via two way ir, fiber optic and light guide cables

Abstract

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19 claims: 8 independent, 11 dependent

  1. 1
    \J What is claimed is:1. Ά method for connecting at least one of AC power device selected from a group comprising a relay, a semiconductor relay, a switch, a semiconductor switch, an AC outlet, an AC current sensor and combinations thereof with at least one control station selected from a group comprising an home automation controller, an home automation control distributor, a video interphone monitor, a shopping terminal, an optical driver, an optical repeater, a command converter, a current drain data receiver, a keypad and combinations thereof via an optical grid comprising at least one of adjustable in air optical link and optical cable selected from a group comprising a fiber optic, a light guide and a combination thereof;said control station includes at least one of first optical transmitter and first optical receiver, said device includes at least one of second optical receiver and second optical transmitter for propagating at least one way optical signal, said method comprising the steps of: a. terminating one of said optical cable at its both ends by a process selected from a group comprising cutting, shaping, polishing, lapping, fitting a plug and combinations thereof;b. attaching and securing one end of said processed cable to the optical access of said first optical transmitter and the other end of said processed cable to the optical access of said second optical receiver;and 56 c. propagating said one way optical signal comprising control commands from said control station to said device.
  2. 8
    The method for connecting at least one of AC power device according to claims 1, 2, 3 or 4, wherein said device is one of SPDT semiconductor switch and SPDT relay for integrating an 60 AC appliance into electric power circuit including a manual SPDT switch and into said optical grid of an home automation, each said SPDT semiconductor switch and said manual SPDT switch includes a pole terminal and dual traveler terminals;said one of SPDT semiconductor switch and SPDT relay has a shape and a size fit for installation into a standard electrical box and comprises a CPU, at least one of a setting switch and a memory for setting an address and appliance identification for at least one of receiving said control commands and transmitting the appliance status via said at least one of said second optical receiver and said second optical transmitter through said optical grid, said method comprising the further steps of;a. connecting said dual traveler terminals of said one of SPDT semiconductor switch and said relay to said dual traveler terminals of said manual SPDT switch;b. connecting one said pole terminal to live AC of said power circuit and the other said pole terminal to said appliance;c. setting an address through said at least one of setting switch and said memory;d. operating said appliance via at least one of said manual SPDT switch and said command propagated to said second optical receiver through said optical grid;and e. propagating optical signals selected from a group comprising confirmations, statuses, current drain, data and combinations thereof from said second optical transmitter 61 to said first optical receiver of said control station via said optical grid.
  3. 9
    The method for connecting at least one of AC power device according to claims 5, 6 or 7, wherein said device is one of SPDT semiconductor switch and SPDT relay for integrating an AC appliance into electric power circuit including a manual SPDT switch and into said optical grid of an home automation, each said SPDT semiconductor switch and said manual SPDT switch includes a pole terminal and dual traveler terminals; said one of SPDT semiconductor switch and SPDT relay has a shape and a size fit for installation into a standard electrical box and comprises a CPU, and at least one of a setting switch and a memory for setting an address and appliance identification for at least one of receiving said control commands and transmitting the appliance status via said at least one of said second IR receiver and said second IR transmitter through said optical grid, said method comprising the further steps of:a. connecting said dual traveler terminals of said SPDT semiconductor switch to said dual traveler terminals of said manual SPDT switch;b. connecting one said pole terminal to live AC of said power circuit and the other said pole terminal to said appliance;c. setting an address through said at least one of setting switch and said memory;d. operating said appliance via one of said manual SPDT switch 62 and said command propagated one way to said second IR receiver through said optical grid;and e. propagating optical signals selected from a group comprising confirmations, statuses, current drain, data and combinations thereof from said second IR transmitter to said first IR receiver of said control station via said optical grid.
  4. 10
    The method for connecting at least one of AC power device according to claims 8 or 9, wherein said CPU is programmed to at least one of increase and decrease at least one of the AC voltage level and the AC current drain fed from said semiconductor switch to said appliance by at least one of linear transitions and programmed steps.
  5. 11
    An AC power device selected from a group comprising a relay, a semiconductor relay, a switch, a semiconductor switch, an AC outlet, an AC current sensor and combinations thereof, said device includes at least one of a second optical receiver and a second optical transmitter for propagating optical signals via an optical grid comprising at least one of adjustable in air optical link and an optical cable selected from a group comprising fiber optic, light guide and a combination thereof with a control station selected from a group comprising an home automation controller, an home automation control distributor, a video interphone monitor, a shopping terminal, an optical 63 driver, an optical repeater, a command converter, a current drain data receiver, a keypad and combinations thereof, said control station includes at least one of a first optical transmitter and a first optical receiver;at least one said optical cable terminated at its both ends by a process selected from a group comprising cutting, shaping, polishing, lapping, fitting a plug and combinations thereof connects said device to said control station;and each said control station and said device includes at least one optical access and a holder for attaching and securing said terminated ends of said at least one optical cable for propagating at least one way optical signals comprising at least one of control commands from said first optical transmitter to said second optical receiver and confirmations, statuses, current drain, data and combinations thereof from said second optical transmitter to said first optical receiver.
  6. 17
    The AC power device according to claims 11, 12 or 13, wherein said device is one of SPDT semiconductor switch and SPDT relay for integrating an AC appliance into electric power circuit including a manual SPDT switch and into said optical grid of an home automation, each said manual SPDT switch and said one of SPDT semiconductor switch and SPDT relay includes a pole terminal and dual traveler terminals;66 said one of SPDT semiconductor switch and SPDT relay has a shape and a size fit for installation into a standard electrical box and comprises a CPU, at least one of a setting switch and a memory for setting an address and appliance identification for at least one of receiving said control commands and transmitting the appliance status via said at least one of said second optical receiver and said second optical transmitter through said optical grid;said dual traveler terminals of said one of SPDT semiconductor switch and said relay are connected to said dual traveler terminals of said manual SPDT switch, one said pole terminal is connected to live AC of said power circuit and the other said pole terminal is connected to said appliance for operating said appliance via one of said manual SPDT switch and said command propagated one way to said second optical receiver through said optical grid;and propagating optical signals selected from a group comprising confirmations, statuses, current drain, data and combinations thereof from said second optical transmitter to said first optical receiver of said control station via said optical grid.
  7. 18
    The AC power device according to claims 14, 15 or 16, wherein said device is one of SPDT semiconductor switch and SPDT relay for integrating an AC appliance into electric power circuit including a manual SPDT switch and into said optical grid of an home automation, each said SPDT semiconductor switch and said 67 manual SPDT switch includes a pole terminal and dual traveler terminals;said one of SPDT semiconductor switch and SPDT relay has a shape and a size fit for installation into a standard'electrical box and comprises a CPU and at least one of a setting switch and a memory for setting an address and appliance identification for at least one of receiving said control commands and transmitting the appliance status via said at least one of said second IR receiver and said second IR transmitter respectively through said optical grid;said dual traveler terminals of said one of SPDT semiconductor switch and said SPDT relay are connected to said dual traveler terminals of said manual SPDT switch, one said pole terminal is connected to live AC of said power circuit and the other said pole terminal to said appliance for operating said appliance via one of said manual SPDT switch and said command propagated one way to said second IR receiver through said optical grid;and propagating optical signals selected from a group comprising confirmations, statuses, current drain, data and combinations thereof from said second IR transmitter to said first IR receiver of said control station via said optical grid.
  8. 19
    The AC power device according to claims 17 or 18, wherein said CPU is programmed to at least one of increase and decrease at least one of the AC voltage level and the AC current drain fed 68 from said semiconductor switch to said appliance by at least one of linear transitions and programmed steps. For the Applicant:yt NAOMI ASSIA LAW OFFICES 69 □’Ewan , crnxan rw:n ατα inia^a pnow pnszn irn nr -jaoa ,ρνιη ηχΰ- paoana ma™ na^maa np’ioa .zrtwan rwaa mp^an ρ-ίΛ axnria ......Gtoca uer □innn Pi? 4VWW* · SW J«w\ _ _ „.~... 2i «3/2)12 05:15044X30) .(mcna nannn) cras amp;’an rwa