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    參數(shù)資料
    型號: ISL81483IP
    廠商: Intersil
    文件頁數(shù): 13/13頁
    文件大?。?/td> 0K
    描述: IC TXRX RS485/422 5V LP 8-DIP
    標(biāo)準(zhǔn)包裝: 50
    類型: 收發(fā)器
    驅(qū)動器/接收器數(shù): 1/1
    規(guī)程: RS422,RS485
    電源電壓: 4.5 V ~ 5.5 V
    安裝類型: 通孔
    封裝/外殼: 8-DIP(0.300",7.62mm)
    供應(yīng)商設(shè)備封裝: 8-PDIP
    包裝: 管件
    9
    FN6050.7
    July 31, 2006
    250kbps versions can operate at full data rates with lengths
    in excess of 1000’.
    Twisted pair is the cable of choice for RS-485/RS-422
    networks. Twisted pair cables tend to pick up noise and
    other electromagnetically induced voltages as common
    mode signals, which are effectively rejected by the
    differential receivers in these ICs.
    To minimize reflections, proper termination is imperative
    when using the 5Mbps device. Short networks using the
    250kbps versions need not be terminated, but, terminations
    are recommended unless power dissipation is an overriding
    concern.
    In point-to-point, or point-to-multipoint (single driver on bus)
    networks, the main cable should be terminated in its
    characteristic impedance (typically 120
    Ω) at the end farthest
    from the driver. In multi-receiver applications, stubs
    connecting receivers to the main cable should be kept as
    short as possible. Multipoint (multi-driver) systems require
    that the main cable be terminated in its characteristic
    impedance at both ends. Stubs connecting a transceiver to
    the main cable should be kept as short as possible.
    Built-In Driver Overload Protection
    As stated previously, the RS-485 spec requires that drivers
    survive worst case bus contentions undamaged. These
    devices meet this requirement via driver output short circuit
    current limits, and on-chip thermal shutdown circuitry.
    The driver output stages incorporate short circuit current
    limiting circuitry which ensures that the output current never
    exceeds the RS-485 spec, even at the common mode
    voltage range extremes. Additionally, these devices utilize a
    foldback circuit which reduces the short circuit current, and
    thus the power dissipation, whenever the contending voltage
    exceeds either supply.
    In the event of a major short circuit condition, these devices
    also include a thermal shutdown feature that disables the
    drivers whenever the die temperature becomes excessive.
    This eliminates the power dissipation, allowing the die to
    cool. The drivers automatically re-enable after the die
    temperature drops about 15 degrees. If the contention
    persists, the thermal shutdown/re-enable cycle repeats until
    the fault is cleared. Receivers stay operational during
    thermal shutdown.
    Low Power Shutdown Mode (Excluding ISL81487)
    These CMOS transceivers all use a fraction of the power
    required by their bipolar counterparts, but the ISL8487 and
    ISL81483 include a shutdown feature that reduces the
    already low quiescent ICC to a 500nA trickle. They enter
    shutdown whenever the receiver and driver are
    simultaneously disabled (RE =VCC and DE = GND) for a
    period of at least 600ns. Disabling both the driver and the
    receiver for less than 50ns guarantees that shutdown is not
    entered.
    Note that receiver and driver enable times increase when
    enabling from shutdown. Refer to Notes 5-9, at the end of
    the Electrical Specification table, for more information.
    Typical Performance Curves VCC = 5V, TA = 25°C, ISL8487, ISL81483 and ISL81487; Unless Otherwise Specified
    FIGURE 6. DRIVER OUTPUT CURRENT vs DIFFERENTIAL
    OUTPUT VOLTAGE
    FIGURE 7. DRIVER DIFFERENTIAL OUTPUT VOLTAGE vs
    TEMPERATURE
    DIFFERENTIAL OUTPUT VOLTAGE (V)
    DRIV
    E
    R
    OUTPUT
    CURRENT
    (m
    A)
    0123
    45
    0
    10
    20
    30
    40
    50
    60
    70
    80
    90
    -40
    0
    50
    85
    2
    2.2
    2.4
    2.6
    2.8
    3
    3.2
    3.4
    3.6
    TEMPERATURE (°C)
    DIFFERENTIA
    L
    O
    U
    TPUT
    VO
    LTAG
    E
    (V)
    -25
    25
    75
    RDIFF = 54Ω
    RDIFF = 100Ω
    ISL8487, ISL81483, ISL81487
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