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    • 6. 发明授权
    • Battery management for optimizing battery and service life
    • 电池管理优化电池和使用寿命
    • US08030899B2
    • 2011-10-04
    • US12241719
    • 2008-09-30
    • Daryl CromerPhilip J. JakesJeremy R. CarlsonTin-Lup Wong
    • Daryl CromerPhilip J. JakesJeremy R. CarlsonTin-Lup Wong
    • H02J7/00
    • H02J7/0063G06F1/263G06F1/3203H01M10/30H01M10/48H02J2007/0067
    • The provision of a mode in silver zinc batteries where a user can access extra capacity as an emergency reserve for times when extra capacity is needed. While this temporarily increases capacity, it does not detrimentally affect cycle life over the longer term, and it permits a silver zinc battery to essentially mimic the long term capacity and cycle life characteristics of a lithium ion battery while still affording inherent advantages associated with silver zinc batteries. In a variant embodiment, this ability to temporarily increase capacity is optimally employed at the end of a battery life cycle in a controlled “roll-off” that accords additional cycles of battery service life. In another variant embodiment, the general capability to control capacity is employed to gradually decrease the available capacity of a battery over the life of the battery, to thereby extend the battery service life.
    • 在银锌电池中提供一种模式,用户可以在需要额外容量的情况下获得额外的容量作为紧急储备。 虽然这暂时增加容量,但是它不会长期影响循环寿命,并且它允许银锌电池基本上模拟锂离子电池的长期容量和循环寿命特性,同时仍然提供与银锌相关的固有优点 电池 在一个变型实施例中,临时增加容量的能力在电池寿命周期结束时被最佳地采用在符合电池使用寿命的附加循环的受控的“滚降”中。 在另一个变型实施例中,采用控制容量的一般能力来逐渐降低电池在电池寿命期间的可用容量,从而延长电池的使用寿命。
    • 7. 发明申请
    • BATTERY MANAGEMENT FOR OPTIMIZING BATTERY AND SERVICE LIFE
    • 电池管理优化电池和维修生命
    • US20100083008A1
    • 2010-04-01
    • US12241871
    • 2008-09-30
    • Philip J. JakesTin-Lup WongTimothy HumphreyJeremy R. CarlsonDarly Cromer
    • Philip J. JakesTin-Lup WongTimothy HumphreyJeremy R. CarlsonDarly Cromer
    • G06F1/26H02J7/00
    • G06F1/30H01M10/32H01M10/4207H02J7/0063H02J2007/0067
    • The provision of a mode in silver zinc batteries where a user can access extra capacity as an emergency reserve for times when extra capacity is needed. While this temporarily increases capacity, it does not detrimentally affect cycle life over the longer term, and it permits a silver zinc battery to essentially mimic the long term capacity and cycle life characteristics of a lithium ion battery while still affording inherent advantages associated with silver zinc batteries. In a variant embodiment, this ability to temporarily increase capacity is optimally employed at the end of a battery life cycle in a controlled “roll-off” that accords additional cycles of battery service life. In another variant embodiment, the general capability to control capacity is employed to gradually decrease the available capacity of a battery over the life of the battery, to thereby extend the battery service life.
    • 在银锌电池中提供一种模式,用户可以在需要额外容量的情况下获得额外的容量作为紧急储备。 虽然这暂时增加容量,但是它不会长期影响循环寿命,并且它允许银锌电池基本上模拟锂离子电池的长期容量和循环寿命特性,同时仍然提供与银锌相关的固有优点 电池 在一个变型实施例中,临时增加容量的能力在电池寿命周期结束时被最佳地采用在符合电池使用寿命的附加循环的受控的“滚降”中。 在另一个变型实施例中,采用控制容量的一般能力来逐渐降低电池在电池寿命期间的可用容量,从而延长电池的使用寿命。
    • 8. 发明授权
    • Battery management for optimizing battery and service life
    • 电池管理优化电池和使用寿命
    • US08481186B2
    • 2013-07-09
    • US12241653
    • 2008-09-30
    • Philip J. JakesDaryl CromerTin-Lup WongJeremy R. CarlsonMark E. CohenTimothy Humphrey
    • Philip J. JakesDaryl CromerTin-Lup WongJeremy R. CarlsonMark E. CohenTimothy Humphrey
    • H01M2/00
    • H01M10/44H01M10/32H01M10/448H01M10/48
    • The provision of a mode in silver zinc batteries where a user can access extra capacity as an emergency reserve for times when extra capacity is needed. While this temporarily increases capacity, it does not detrimentally affect cycle life over the longer term, and it permits a silver zinc battery to essentially mimic the long term capacity and cycle life characteristics of a lithium ion battery while still affording inherent advantages associated with silver zinc batteries. In a variant embodiment, this ability to temporarily increase capacity is optimally employed at the end of a battery life cycle in a controlled “roll-off” that accords additional cycles of battery service life. In another variant embodiment, the general capability to control capacity is employed to gradually decrease the available capacity of a battery over the life of the battery, to thereby extend the battery service life.
    • 在银锌电池中提供一种模式,用户可以在需要额外容量的情况下获得额外的容量作为紧急储备。 虽然这暂时增加容量,但是它不会长期影响循环寿命,并且它允许银锌电池基本上模拟锂离子电池的长期容量和循环寿命特性,同时仍然提供与银锌相关的固有优点 电池 在一个变型实施例中,临时增加容量的能力在电池寿命周期结束时被最佳地采用在符合电池使用寿命的附加循环的受控的“滚降”中。 在另一个变型实施例中,采用控制容量的一般能力来逐渐降低电池在电池寿命期间的可用容量,从而延长电池的使用寿命。
    • 9. 发明授权
    • Battery management for optimizing battery and service life
    • 电池管理优化电池和使用寿命
    • US08244312B2
    • 2012-08-14
    • US12241871
    • 2008-09-30
    • Philip J. JakesTin-Lup WongTimothy HumphreyJeremy R. CarlsonDaryl Cromer
    • Philip J. JakesTin-Lup WongTimothy HumphreyJeremy R. CarlsonDaryl Cromer
    • H04M1/00H01M2/00H01M10/48H02J7/00
    • G06F1/30H01M10/32H01M10/4207H02J7/0063H02J2007/0067
    • The provision of a mode in silver zinc batteries where a user can access extra capacity as an emergency reserve for times when extra capacity is needed. While this temporarily increases capacity, it does not detrimentally affect cycle life over the longer term, and it permits a silver zinc battery to essentially mimic the long term capacity and cycle life characteristics of a lithium ion battery while still affording inherent advantages associated with silver zinc batteries. In a variant embodiment, this ability to temporarily increase capacity is optimally employed at the end of a battery life cycle in a controlled “roll-off” that accords additional cycles of battery service life. In another variant embodiment, the general capability to control capacity is employed to gradually decrease the available capacity of a battery over the life of the battery, to thereby extend the battery service life.
    • 在银锌电池中提供一种模式,用户可以在需要额外容量的情况下获得额外的容量作为紧急储备。 虽然这暂时增加容量,但是它不会长期影响循环寿命,并且它允许银锌电池基本上模拟锂离子电池的长期容量和循环寿命特性,同时仍然提供与银锌相关的固有优点 电池 在一个变型实施例中,临时增加容量的能力在电池寿命周期结束时被最佳地采用在符合电池使用寿命的附加循环的受控的“滚降”中。 在另一个变型实施例中,采用控制容量的一般能力来逐渐降低电池在电池寿命期间的可用容量,从而延长电池的使用寿命。