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    參數(shù)資料
    型號: LK4601-9RD1B1
    元件分類: 電源模塊
    英文描述: 1-OUTPUT 150 W AC-DC PWR FACTOR CORR MODULE
    封裝: METAL, CASE K02, MODULE
    文件頁數(shù): 13/28頁
    文件大小: 606K
    代理商: LK4601-9RD1B1
    Cassette Style
    150 Watt AC-DC Converters
    K Series PFC
    Edition 01/01.2001
    20/28
    Table 13: Isolation
    Characteristic
    Input to
    Output to Output to
    Unit
    case
    output
    case
    output
    Electric
    Required according to
    1.5
    3.0 1
    ––
    kVrms
    strength
    IEC/EN 60950
    2.1
    4.2 1
    ––
    kV DC
    test voltage
    Actual factory test 1 s
    2.8
    5.6 1
    1.4
    0.14
    AC test voltage equivalent
    2.0
    4.0 1
    1.0
    0.1
    kVrms
    to actual factory test
    Insulation resistance at 500 V DC
    >300
    >100 2
    M
    1 In accordance with IEC/EN 60950 only subassemblies are tested in factory with this voltage.
    2 Tested at 100 V DC.
    For creepage distances and clearances refer to:
    Technical Information: Safety.
    Due to high current values, all LK units provide two inter-
    nally parallel connected contacts for certain paths (pins 4/6,
    8/10, 26/28 and 30/32, respectively). It is recommended to
    connect load and supply to both female connector pins of
    each path in order to keep the voltage drop across the con-
    nector pins to an absolute minimum and to not over-
    stress the connector contacts if currents are higher than
    approx. 8 A. The connector contacts are rated 8 A over the
    whole temperature range.
    Make sure that there is sufficient air flow available for con-
    vection cooling. This should be verified by measuring the
    case temperature when the unit is installed and operated in
    the end-use application. The maximum specified case tem-
    perature
    TC max shall not be exceeded. See also: Thermal
    Considerations.
    Check for hazardous voltages before altering any connec-
    tions.
    Ensure that a unit failure (e.g. by an internal short-circuit)
    does not result in a hazardous condition. See also:
    Safety
    of operator accessible output circuit.
    Cleaning Agents
    In order to avoid possible damage, any penetration of
    cleaning fluids is to be prevented, since the power supplies
    are not hermetically sealed.
    Protection Degree
    Condition: Female connector fitted to the unit.
    IP 30: All units except those with option P, and except
    those with option D or V with potentiometer.
    IP 20: All units fitted with option P, or with option D or V
    with potentiometer.
    Standards and Approvals
    All AC-DC converters correspond to class I equipment.
    They are UL recognized according to UL 1950, UL recog-
    nized for Canada to CAN/CSA C22.2 No. 950-95 and LGA
    approved to IEC/EN 60950 standards.
    The units have been evaluated for:
    Building in
    Basic insulation between input and case, based on 250 V
    AC and 400 V DC
    Double or reinforced insulation between input and output,
    based on 250 V AC and 400 V DC
    Basic insulation between output and case based on
    200 V AC and DC.
    Operational insulation between output and output
    The use in a pollution degree 2 environment
    Connecting the input to a primary or secondary circuit
    which is subject to a maximum transient rating of 2500 V
    (overvoltage category III based on a 110 V primary cir-
    cuit, overvoltage category II based on a 230 V primary
    circuit).
    The UL 1950 recognition limits the maximum case tem-
    perature of the standard modules to
    TC = TC max – 10 K =
    95
    °C.
    The AC-DC converters are subject to manufacturing sur-
    veillance in accordance with the above mentioned UL,
    CSA, EN and with ISO 9001 standards.
    Isolation
    The electric strength test is performed as factory test in ac-
    cordance with IEC/EN 60950 and UL 1950 and should not
    be repeated in the field. Power-One will not honour any
    guarantee claims resulting from electric strength field tests.
    Important: Testing by applying AC voltages will result in
    high and dangerous leakage currents flowing through
    the Y-capacitors (see fig.:
    Block diagram).
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