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  • 參數(shù)資料
    型號(hào): MAX491MJD
    廠商: MAXIM INTEGRATED PRODUCTS INC
    元件分類: 通用總線功能
    英文描述: Low-Power, Slew-Rate-Limited RS-485/RS-422 Transceivers
    中文描述: LINE TRANSCEIVER, CDIP14
    封裝: CERAMIC, DIP-14
    文件頁(yè)數(shù): 12/16頁(yè)
    文件大?。?/td> 133K
    代理商: MAX491MJD
    M
    ±15kV ES D-Protec ted, S lew-Rate-Limited,
    Low-Power, RS -485/RS -422 Transc eivers
    12
    ______________________________________________________________________________________
    The major difference between tests done using the
    Human Body Model and IEC1000-4-2 is higher peak
    current in IEC1000-4-2, because series resistance is
    lower in the IEC1000-4-2 model. Hence, the ESD with-
    stand voltage measured to IEC1000-4-2 is generally
    lower than that measured using the Human Body
    Model. Figure 7 shows the current waveform for the 8kV
    IEC1000-4-2 ESD contact-discharge test.
    The air-gap test involves approaching the device with a
    charged probe. The contact-discharge method connects
    the probe to the device before the probe is energized.
    Machine Model
    The Machine Model for ESD tests all pins using a
    200pF storage capacitor and zero discharge resis-
    tance. Its objective is to emulate the stress caused by
    contact that occurs with handling and assembly during
    manufacturing. Of course, all pins require this protec-
    tion during manufacturing—not just inputs and outputs.
    Therefore, after PC board assembly, the Machine Model
    is less relevant to I/O ports.
    MAX 487E/MAX 1487E:
    128 T ransc eivers on the Bus
    The 48k
    , 1/4-unit-load receiver input impedance of the
    MAX487E and MAX1487E allows up to 128 transceivers
    on a bus, compared to the 1-unit load (12k
    input
    impedance) of standard RS-485 drivers (32 transceivers
    maximum). Any combination of MAX487E/MAX1487E
    and other RS-485 transceivers with a total of 32 unit
    loads or less can be put on the bus. The MAX481E,
    MAX483E, MAX485E, and MAX488E–MAX491E have
    standard 12k
    receiver input impedance.
    MAX 483E/MAX 487E/MAX 488E/MAX 489E:
    Reduc ed EMI and Reflec tions
    The MAX483E and MAX487E–MAX489E are slew-rate
    limited, minimizing EMI and reducing reflections
    caused by improperly terminated cables. Figure 16
    shows the driver output waveform and its Fourier analy-
    sis of a 150kHz signal transmitted by a MAX481E,
    MAX485E, MAX490E, MAX491E, or MAX1487E. High-
    frequency harmonics with large amplitudes are evident.
    Figure 17 shows the same information displayed for a
    MAX483E, MAX487E, MAX488E, or MAX489E transmit-
    ting under the same conditions. Figure 17’s high-fre-
    quency harmonics have much lower amplitudes, and
    the potential for EMI is significantly reduced.
    Low-Power S hutdown Mode
    (MAX 481E/MAX 483E/MAX 487E)
    A low-power shutdown mode is initiated by bringing
    both RE high and DE low. The devices will not shut
    down unless both the driver and receiver are disabled.
    In shutdown, the devices typically draw only 0.5μA of
    supply current.
    RE and DE may be driven simultaneously; the parts are
    guaranteed not to enter shutdown if RE is high and DE
    is low for less than 50ns. If the inputs are in this state
    for at least 600ns, the parts are guaranteed to enter
    shutdown.
    For the MAX481E, MAX483E, and MAX487E, the t
    ZH
    and t
    ZL
    enable times assume the part was not in the
    low-power shutdown state (the MAX485E, MAX488E–
    MAX491E, and MAX1487E can not be shut down). The
    t
    ZH(SHDN)
    and t
    ZL(SHDN)
    enable times assume the
    parts were shut down (see Electrical Characteristics).
    500kHz/div
    0Hz
    5MHz
    10dB/div
    Figure 16. Driver Output Waveform and FFT Plot of
    MAX485E/MAX490E/MAX491E/MAX1487E Transmitting a
    150kHz Signal
    500kHz/div
    0Hz
    5MHz
    10dB/div
    Figure 17. Driver Output Waveform and FFT Plot of
    MAX483E/MAX487E–MAX489E Transmitting a 150kHz Signal
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