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  • 參數資料
    型號: L8560
    英文描述: Low-Power SLIC with Ringing
    中文描述: 低功耗振鈴用戶接口
    文件頁數: 28/46頁
    文件大?。?/td> 842K
    代理商: L8560
    Data Sheet
    April 2000
    L8560 Low-Power SLIC with Ringing
    28
    Lucent Technologies Inc.
    Applications
    (continued)
    Power Ringing
    (continued)
    12-3286
    Figure 28. POTS Controlled from an ISDN Terminal Adapter
    PROT.
    SLIC
    RINGER
    CODEC
    TDM
    μ
    P
    ISDN
    TA
    TO
    TELEPHONE SET
    RJ-11
    XMT
    RCV
    TO ISDN
    SERVICE
    RJ-45
    DX, DR
    CLK, FS
    DTMF
    DECODER
    Power Ringing Load
    Bellcore TA-909 specifies that a minimum 40 Vrms
    must be delivered to a 5 REN ringing load of 1380
    +
    40
    μ
    F. During the ringing state, V
    BAT1
    is automatically
    applied to the tip/ring power amplifiers. For 5 REN
    load, it is recommended that V
    BAT1
    be set to –65 Vdc.
    Also during the power ring state, the dc current limit is
    automatically boosted by a factor of 2.8 over the cur-
    rent limit set by resistor R
    PROG
    . Both of these factors
    are necessary to ensure delivery of 40 Vrms to the
    North American 5 REN ringing load of 1380
    + 40
    μ
    F.
    Crest Factor
    The balanced trapezoidal ring signal is generated by
    simply toggling the SLIC between the powerup state
    forward and powerup reverse battery states. The state
    change is done by applying a square wave (whose fre-
    quency is the desired ring frequency) to logic input B1.
    Capacitors FB1 and FB2 are used to control or ramp
    the speed of the transition of the battery reverse, thus
    shaping the balanced ring signal. Waveforms of crest
    factors 1.6 and 1.2 are shown in Figure 29 and Figure
    30.
    In a real application, the ringing trapezoidal waveform
    crest factor can be estimated by:
    Crest factor =
    Where: f = ringing frequency; C
    FB
    = (C
    FB1
    + C
    FB2
    )/2;
    I
    CS
    = 29
    μ
    A @
    ±
    8% accuracy over temperature;
    V
    OH
    = SLIC overhead during ring.
    12-3346a (F)
    Note: Slew rate = 5.65 V/ms; trise = tfall = 23 ms; pwidth = 2 ms;
    period = 50 ms.
    Figure 29. Ringing Waveform Crest Factor = 1.6
    12-3347a (F)
    Note: Slew rate = 10.83 V/ms; trise = tfall = 12 ms; pwidth = 13 ms;
    period = 50 ms.
    Figure 30. Ringing Waveform Crest Factor = 1.2
    3
    1
    ----------------------------------------------------------------------------
    I
    CS
    )
    ×
    ------------------------------------------------------------------------------------------
    TIME (s)
    –80
    –60
    –40
    –20
    0
    20
    40
    60
    80
    0.00
    0.02 0.06
    0.04 0.08
    0.10
    0.12
    0.14
    0.16
    0.18
    0.20
    V
    TIME (s)
    –80
    –60
    –40
    –20
    0
    20
    40
    60
    80
    0.00
    0.02 0.06
    0.04 0.08
    0.10
    0.12
    0.14
    0.16
    0.18
    0.20
    V
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