參數(shù)資料
    型號: FM1301-7PV0A
    元件分類: 電源模塊
    英文描述: 1-OUTPUT 50 W DC-DC REG PWR SUPPLY MODULE
    封裝: METAL, CASE M02, MODULE
    文件頁數(shù): 13/25頁
    文件大?。?/td> 569K
    代理商: FM1301-7PV0A
    Cassette Style
    DC-DC Converters
    M Series
    Edition 01/01.2001
    20/25
    Fig. 20
    Typical inrush current waveforms of CM, CMZ, EM, LM
    and LMZ DC-DC converter with option E
    Precautions:
    In order to avoid overload of the series resistor RI the on/off
    switching cycle should be limited to 12 s if switched on/off
    continuously. There should not be more than 10 start-up
    cycles within 20 s at a case temperature of 25
    °C.
    If CM and CMZ types are driven by input voltages below
    35 V DC or LM and LMZ types below 100 V AC, the maxi-
    mum case temperature should be derated by 10 K or the to-
    tal output power should be derated by 20%. EM, LM and
    LMZ units driven by DC input voltages do not need to be
    derated within the full specified input voltage range.
    Availability:
    Option E is available for CM, EM, LM and CMZ, LMZ mod-
    ules with a nominal output power of 51 W maximum.
    Input
    Filter
    Control
    Converter
    FET
    Ci
    RI
    RS
    Rectifier
    (LM/LMZ types)
    11018
    Fig. 19
    Option E block diagram
    Table 19: Inrush current characteristics with option E
    Characteristic
    CM, CMZ
    EM, LM, LMZ
    Unit
    at
    Ui = 110 V DC
    at
    Ui = 110 V DC
    at
    Ui = 372 V DC
    typ
    max
    typ
    max
    typ
    max
    Iinr p
    Peak inrush current
    6.5
    8
    2.2
    4
    7.3
    10
    A
    tinr
    Inrush current duration
    22
    30
    10
    20
    40
    ms
    E Electronic Inrush Current Limitation
    Available for CM, EM, LM and CMZ, LMZ types.
    The standard version of the modules CM, DM, EM, LM as
    well as CMZ, DMZ, LMZ include a passive inrush current
    limitation in the form of a NTC resistor.
    For applications which require an improved inrush current
    limitation, an active electronic circuit as shown in fig.
    Option
    E block diagram has been developed. Typical inrush cur-
    rent waveforms of units equipped with this option are
    shown below.
    CM and CMZ units meet the CEPT/ETSI standards for 48 V
    DC supply voltage according to ETS 300132-2 if fitted with
    option E combined with option D6 (input voltage monitor-
    ing). Option D6, externally adjustable via potentiometer, is
    necessary to disable the converter at input voltages below
    the actual service ranges, avoiding an excessive input cur-
    rent when the input voltage is raised slowly according to
    ETS 300132-2. Option D6 threshold level
    Uti + Uhi (refer to
    description of option D) should be adjusted to 36.0...40.5 V
    for 48 V DC nominal supply voltage (for 60 V DC systems,
    threshold should be set to 44.0...50.0 V DC). The D output
    (pin 5) should be connected to the inhibit (pin 2). For appli-
    cations where potentiometers are not allowed refer to op-
    tion D9.
    12
    10
    8
    6
    4
    2
    0
    10
    20
    30
    40
    t [ms]
    Ii [A]
    tinr
    Normal operation
    (FET fully conducting)
    Ii = Po/(Ui η)
    11019
    tinr
    CM, CMZ at 110 V DC
    EM, LM, LMZ at 372 V DC
    EM, LM, LMZ at 110 V DC
    F Fuse Not Accessible
    The standard M units have a fuseholder containing a 5
    × 20
    mm fuse which is externally accessible and to be found in
    the back plate near the connector. Some applications re-
    quire an inaccessible fuse. Option F provides a fuse moun-
    ted directly onto the main PCB inside the case.
    The full self-protecting functions of the module do normally
    not lead to broken fuses, except as a result of inverse polar-
    ity at the input of an AM, BM, CM, FM or CMZ type or if a
    power component inside fails (switching transistor, free-
    wheeling diode, etc). In such cases the defective unit has to
    be returned to Power-One for repair.
    H Enhanced Electric Strenght Test
    Electric strength test voltage output to case 2800 V DC
    (2000 V AC) instead of 1400 V DC (1000 V AC).
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