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  • 參數(shù)資料
    型號: 935261411112
    廠商: NXP SEMICONDUCTORS
    元件分類: 穩(wěn)壓器
    英文描述: 0.014 A BATTERY CHARGE CONTROLLER, 200 kHz SWITCHING FREQ-MAX, PDSO20
    封裝: 5.30 MM, PLASTIC, SSOP-20
    文件頁數(shù): 31/31頁
    文件大?。?/td> 417K
    代理商: 935261411112
    1999 Jan 27
    9
    Philips Semiconductors
    Preliminary specication
    Fast charge ICs for NiCd, NiMH, SLA and
    LiIon
    TEA1102; TEA1102T;
    TEA1102TS
    To ensure an eventual load during all charging states, the
    fast charge mode will be entered again if the battery
    voltage drops below 15 V for SLA or 3 V for Lilon.
    When charging, the standby mode (LiIon and SLA) can
    only be entered after a certain period of time depending on
    time-out. The same applies for charging NiCd or NiMH
    batteries. To support full test of the TEA1102x at
    application, the standby mode is also entered when
    Vbat <Vbat(l) at fill-up or top-off respectively.
    Timer
    The timing of the circuit is controlled by the oscillator
    frequency.
    The timer block defines the maximum charging time by
    ‘time-out’. At a fixed oscillator frequency, the time-out time
    can be adapted by the Programmable Time-out Divider
    (PTD) using the following equation.
    (6)
    t
    time
    out
    2
    26
    POD
    ×
    PTD
    ×
    t
    osc
    ×
    =
    The time-out timer is put on hold by low voltage,
    temperature protection and during the inhibit mode.
    The Programmable Oscillator Divider (POD) enables the
    oscillator frequency to be increased without affecting
    the sampling time and time-out. Raising the oscillator
    frequency will reduce the size of the inductive components
    that are used.
    At fast charging, after battery insertion, after refresh or
    supply interruption, the full detector will be disabled for a
    period of time to allow a proper start with flat or inverse
    polarized batteries. This hold-off period is disabled at fast
    charging by raising pin Vstb to above ±5 V (once).
    So for test options it is possible to slip the hold-off period.
    The hold-off time is defined by the following equation:
    (7)
    Table 2 gives an overview of the settings of timing and
    discharge/charge currents.
    t
    hold
    off
    2
    5
    t
    time
    out
    ×
    =
    Table 2
    Timing and current formulae
    SYMBOL
    DESCRIPTION
    FORMULAE
    tosc
    timing
    see Fig.3
    Tsampling (T/t)
    NTC voltage sampling frequency
    217
    × POD × PSD × tosc
    Tsampling (Vpeak)
    battery voltage sampling frequency
    216
    × POD × tosc
    ttop-off
    227
    × POD × tosc
    ttime-out
    226
    × POD × PTD × t
    osc
    thold-off
    25
    × ttime-out
    tLED
    inhibit or protection
    214
    × POD × tosc
    tsense
    210
    × POD × tosc
    tswitch
    221
    × POD × PTD × t
    osc
    Ifast
    charge/discharge currents
    Itop-off
    Itrickle
    Iload-max
    IRFSH
    R
    b
    R
    sense
    -----------------
    V
    ref
    R
    ref
    ----------
    ×
    R
    b
    R
    sense
    -----------------
    3
    ×
    10
    6
    ×
    R
    b
    R
    sense
    -----------------
    15
    16
    ------
    ×
    10
    6
    ×
    R
    b
    R
    sense
    -----------------
    40
    ×
    10
    6
    ×
    100 mV
    R
    sense
    --------------------
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