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    參數(shù)資料
    型號: MAX4144ESD
    廠商: Maxim Integrated Products
    文件頁數(shù): 4/16頁
    文件大小: 0K
    描述: IC RCVR DIFF LINE HS 14-SOIC
    標(biāo)準(zhǔn)包裝: 50
    類型: 接收器
    驅(qū)動器/接收器數(shù): 0/3
    電源電壓: 4.5 V ~ 5.5 V
    安裝類型: 表面貼裝
    封裝/外殼: 14-SOIC(0.154",3.90mm 寬)
    供應(yīng)商設(shè)備封裝: 14-SOIC
    包裝: 管件
    MAX4144/MAX4145/MAX4146
    High-Speed, Low-Distortion,
    Differential Line Receivers
    12
    ______________________________________________________________________________________
    Figure 2 shows the connection for RG. RG might simply
    be a resistor, or it can be a complex pole-zero pair for
    filter and shaping applications (Figure 9). Use surface-
    mount gain-setting components to ensure stability.
    Using REF and SENSE
    The MAX4144/MAX4145/MAX4146 have a REF pin (nor-
    mally connected to ground) and a SENSE pin (normally
    connected to OUT). In some long-line applications, it
    may be desirable to connect SENSE and OUT together
    at the load, instead of the typical connection at the part
    (Figure 3). This compensates for the long line’s resis-
    tance, which otherwise leads to an IR voltage error.
    When using this technique, keep the sense lines’
    impedance low to minimize gain errors. Also, keep
    capacitance low to maximize frequency response. The
    gain of the MAX4144/MAX4145/MAX4146 output stage
    is approximated by the following equation:
    where
    ΔRSENSE and ΔRREF are the SENSE and REF
    trace impedances, respectively. R is 700
    Ω for the
    MAX4144 and MAX4145, and 100
    Ω for the MAX4146.
    Additionally, mismatches in the SENSE and REF traces
    lead to common-mode gain errors. Common-mode
    gain is approximated by the following equation:
    Substituting numbers for
    ΔRREF and ΔRSENSE into this
    equation, we can see that if changes in
    ΔRREF and
    ΔRSENSE are equal, CMR is not degraded.
    Driving Capacitive Loads
    The MAX4144/MAX4145/MAX4146 provide maximum
    AC performance when not driving an output load
    capacitance. This is the case when driving a correctly
    terminated transmission line (i.e., a back-terminated
    cable). In most amplifier circuits, driving large load
    capacitance increases the chance of oscillations. The
    amplifier’s output impedance and the load capacitor
    combine to add a pole and excess phase to the loop
    response. If the pole’s frequency is low enough and
    phase margin is degraded sufficiently, oscillations may
    occur. A second concern when driving capacitive
    loads results from the amplifier’s output impedance,
    A=
    R
    -
    R
    R + 700
    VCM
    REF
    SENSE
    ΔΔ
    Ω
    700
    R
    700
    R
    REF
    ΩΔ
    +
    ++
    A=
    1
    2
    700
    R
    1
    700
    R
    700
    R
    V
    SENSE
    REF
    ΩΔ
    +
    ++
    G = A = 1 +
    1.4k
    R
    (MAX4145)
    G = A = 10 +
    14k
    R
    (MAX4146)
    V
    G
    V
    G
    Ω
    100k
    1M
    10M
    100M
    1G
    -3
    -4
    -5
    -2
    FREQUENCY (Hz)
    GAIN
    (dB)
    -1
    0
    1
    2
    3
    4
    5
    CL = 10pF
    CL = 5pF
    CL = 15pF
    Figure 4. MAX4144 Small-Signal Response with Capacitive
    Load
    SENSE
    OUT
    REF
    RL
    MAX4144
    MAX4145
    MAX4146
    Figure 3. Connection of SENSE and REF to a Remote Load
    IN-
    RG
    IN+
    MAX4145
    MAX4146
    Figure 2. Connection of RG in MAX4146
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    MAX4144-MAX4146 制造商:MAXIM 制造商全稱:Maxim Integrated Products 功能描述:High-Speed, Low-Distortion, Differential Line Receivers