參數(shù)資料
        型號(hào): LK5660-9RD3TB2
        廠(chǎng)商: POWER-ONE INC
        元件分類(lèi): 電源模塊
        英文描述: 2-OUTPUT 150 W AC-DC PWR FACTOR CORR MODULE
        封裝: METAL, CASE K02, MODULE
        文件頁(yè)數(shù): 23/28頁(yè)
        文件大小: 1215K
        代理商: LK5660-9RD3TB2
        K Series
        AC-DC Converters >100 Watt
        Rugged Environment
        Edition 4/4.99
        4/28
        MELCHER
        The Power Partners.
        Rs ext
        Ri
        RNTC
        Iinr p
        Ui rms
        Ci
        04001
        Input Under-/Overvoltage Lock-out
        If the input voltage remains below approx. 65 V AC or ex-
        ceeds approx. 280 V AC an internally generated inhibit sig-
        nal disables the output(s). When checking this function the
        absolute maximum input voltage rating
        Ui abs should be
        considered! Between
        Ui min and the undervoltage lock-out
        level the output voltage may be below the value defined in
        table:
        Output data (see: Technical Information: Measuring
        and Testing).
        Input Transient Protection
        A VDR together with the input fuse and a symmetrical input
        lter form an effective protection against high input tran-
        sient voltages.
        Input Fuse
        A fuse mounted inside the converter protects the module
        against severe defects. (If operated from a DC-source this
        fuse may not fully protect the module when the input volt-
        age exceeds 200 V DC! In applications where the convert-
        ers operate at source voltages above 200 V DC an external
        fuse or a circuit breaker at system level should be in-
        stalled!)
        Table 3: Fuse Specication
        Module
        Fuse type
        Fuse rating
        LK4/5000 1
        slow-blow
        SP T
        4 A, 250 V
        1 Fuse size 5
        × 20 mm
        Fig. 3
        Equivalent circuit diagram for input impedance
        Electrical Input Data
        General Conditions
        TA = 25
        °C, unless T
        C is specied.
        – Pin 18 connected to pin 14,
        Uo adjusted to Uo nom (option P); R input not connected.
        – Sense line pins S+ and S– connected to Vo+ and Vo– respectively.
        Table 2: Input data
        Input
        LK
        Characteristics
        Conditions
        min
        typ
        max
        Unit
        Ui
        Operating input voltage
        Io = 0…Io nom
        85
        255
        V AC 3, 4
        Ui nom Nominal input voltage
        TC min…TC max
        230
        Ii
        Input current
        Ui nom, Io nom 1
        0.8
        Arms
        Pi o
        No-load input power
        Ui min…Ui max
        9.0
        10
        W
        Pi inh
        Idle input power
        unit inhibited
        3.5
        5
        Ri
        Input resistance
        TC = 25°C
        480
        m
        RNTC
        NTC resistance 2
        3200
        4000
        Ci
        Input capacitance
        80
        100
        120
        F
        Ui RFI
        Conducted input RFI
        EN 55022
        B
        Radiated input RFI
        Ui nom, Io nom
        B
        Ui abs
        Input voltage limits
        –400
        400
        V DC
        (without damage)
        –400
        400
        VP
        1 With double output modules, both outputs loaded with Io nom.
        2 Valid for -7, -6, versions with NTC, (-9 versions exclude the NTC). Initial switch-on cycle. Subsequent switch-on/off cycles increase the
        inrush current peak value.
        3 AC frequency range 47...63 Hz.
        4 For DC-input please ask your local Melcher partner
        Reverse Polarity Protection
        Should the input voltage to the unit be supplied from a DC
        source the built-in bridge rectier provides reverse polarity
        protection.
        Inrush Current Limitation
        The modules of the versions -7, -6, incorporate an NTC re-
        sistor in the input circuitry which - at initial turn on - reduces
        the peak inrush current value by a factor of 5...10 to protect
        connectors and switching devices from damage. Subse-
        quent switch-on cycles within short periods will cause an
        increase of the peak inrush current value due to the warm-
        ing-up of the NTC resistor. See also:
        E option.
        Inrush Current Peak Value
        The inrush current peak value (initial switch-on cycle) can
        be determined by following calculation:
        Ui rms √2
        Iinr p = ––––––––––––––––
        (
        Rs ext + Ri + RNTC)
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