Nova Patents
EP2015091A2

Cell monitoring and balancing

Abstract

A method for monitoring the voltage of each of a plurality of cells of a battery pack is provided. The method may include monitoring a voltage potential for each of a plurality of cells in a battery pack utilizing a single channel of battery control unit within the battery pack. If, during discharge of the battery, e.g., the battery is being used to power a hand tool, the voltage potential of any cell is determined by the battery control unit to be below a predetermined minimum voltage, the battery control unit discontinues a current flow from battery pack to the tool. Additionally, during charging of the battery pack, if a voltage differential between any one of the cells and any other one of the cells is determined to be above a predetermined maximum differential, the battery control unit reduces the voltage potential stored in the cell having the higher voltage potential.

EP2015091A2, drawing sheet 1
Sheet 1 of 11

Term

Projected expiry 11 July 2028.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

13 claims: 2 independent, 11 dependent

  1. 1
    A method for monitoring the voltage of each of a plurality of cells of a battery pack, said method comprising:monitoring a voltage potential for each of a plurality of cells in a battery pack utilizing a single channel of a battery control unit within the battery pack;discontinuing current flow from battery pack when the voltage potential of any cell is determined by the battery control unit to be below a predetermined minimum voltage during discharge of the battery pack;and reducing the voltage potential stored in any one or more of the cells when a voltage differential between the respective one or more cells and any other one of the cells having a lesser voltage potential is determined by the battery control unit to exceed a predetermined maximum differential during charging of the battery pack.
  2. 2
    The method of Claim 1 further comprising reducing the voltage potential stored in any one or more of the cells when the voltage potential of the respective one or more cells is determined by the battery control unit to be above a predetermined maximum voltage during charging of the battery pack.
  3. 3
    The method of Claim 1, wherein monitoring the voltage potential for each of the plurality of cells comprises sequentially sensing a node voltage at each of a plurality of nodes of a monitoring and balancing circuit, each node connecting one of the cells to a respective one of a plurality of monitoring and balancing (M&B) sub-circuits of the monitoring and balancing circuit.
  4. 4
    The method of Claim 3, wherein monitoring the voltage potential for each of the plurality of cells further comprises calculating the voltage potential for each cell by sequentially subtracting from the node voltage of each respective cell from the node voltage of the previously sensed cell.
  5. 5
    The method of Claim 3, wherein monitoring the voltage potential for each of the plurality of cells utilizing a single channel of the battery control unit comprises receiving the node voltage signals from each of the M&B sub-circuits at a measurement node common to each of the M&B sub-circuits and coupling the common measurement node via a single analog to digital converter (ADC) to the battery control unit.
  6. 6
    The method of Claim 3, wherein monitoring the voltage potential for each of the plurality of cells utilizing a single channel of the battery control unit comprises:receiving the node voltage signals from each of the M&B sub-circuits during a discharge mode, at a first sample rate, via a single discharge mode ADC coupled to a common measurement node, the discharge mode ADC interposed between the battery control unit and each of the M&B sub-circuits;and receiving the node voltage signals from each of the M&B sub-circuits during a charge mode, at a second sample rate that is slower than the first sample rate, via a single charge mode analog to digital converter (ADC) coupled to a common measurement node, the charge mode ADC interposed between the battery control unit and each of the M&B sub-circuits.
  7. 7
    The method of Claim 1, wherein monitoring the voltage potential for each of the plurality of cells comprises varying a sample rate at which the voltage potentials of the cells are measured, based on a predetermined parameter of the cells during discharge of the battery pack.
  8. 8
    A cell monitoring circuit for a battery pack having a plurality of battery cells contained therein, comprising:a plurality of cell monitoring circuits, each cell monitoring circuit is configured to measure voltage across a different one of the battery cells and output a voltage measure to a measurement node common to the plurality of cell monitoring circuits;a multiplexer controller coupled to each of the cell monitoring circuits and operable to select a voltage measure from at least one of the cell monitoring circuits to present at the measurement node;and a battery control unit in data communication with the multiplexer controller and having an input coupled to the measurement node to receive a voltage measure therefrom.