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CHARGING/DISCHARGING MONITORING DEVICE AND BATTERY PACK

  • US 20130187610A1
  • Filed: 01/24/2013
  • Published: 07/25/2013
  • Est. Priority Date: 01/25/2012
  • Status: Abandoned Application
First Claim
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1. A charging/discharging monitoring device configured to monitor charging/discharging of a battery pack, in which a plurality of battery cell sets are connected in series in multistage, the sets each including a plurality of battery cells connected in series, the monitoring device comprising:

  • a plurality of wiring boards disposed correspondingly to the battery cell sets, the wiring boards each including;

    a semiconductor integrated circuit unit including;

    a monitoring circuit disposed to the corresponding battery cell set so as to monitor voltage variation of the battery cells in the corresponding battery cell set;

    a reception circuit including paired internal connection terminals to which differential data is inputted; and

    a transmission circuit including paired internal connection terminals from which differential data is outputted;

    external connection terminals provided correspondingly to the internal connection terminals;

    capacitors arranged correspondingly to the internal connection terminals so as to electrically connect the internal connection terminals with the corresponding external connection terminals, respectively;

    resistors arranged correspondingly to the capacitors, each to have one end connected onto the corresponding external connection terminal and the other end connected to a predetermined potential, anda plurality of signal transmission paths arranged across between the corresponding wiring boards, each of the signal transmission paths including conductive lines arranged to electrically connect the corresponding external connection terminals so as to connect the plurality of the semiconductor integrated circuit units in a daisy chain connection,wherein each of the signal transmission paths is configured with;

    a first two-wire transmission path through which an output from the semiconductor integrated circuit unit on an upstream side of the daisy chain connection is transmitted via the corresponded capacitor to the semiconductor integrated circuit unit on a downstream side of the daisy chain connection; and

    a second two-wire transmission path through which an output from the semiconductor integrated circuit unit on a downstream side of the daisy chain connection is transmitted via the corresponded capacitor to the semiconductor integrated circuit unit on an upstream side of the daisy chain connection, andwherein a wire length of each wiring part, in which each wiring part connects the capacitor with the corresponding internal connection terminal on the wiring board, is configured to have such a length as to hinder resonance from being caused against electromagnetic wave noises in an electromagnetic wave noise environment under which the wiring board is arranged.

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