參數(shù)資料
      型號(hào): LMZ2540-7EPD8AHFU
      元件分類: 電源模塊
      英文描述: 2-OUTPUT AC-DC REG PWR SUPPLY MODULE
      封裝: 168.50 X 111.20 MM, 38.70 MM HEIGHT, METAL, CASE M02, MODULE
      文件頁(yè)數(shù): 24/24頁(yè)
      文件大?。?/td> 536K
      代理商: LMZ2540-7EPD8AHFU
      M-Family
      DC-DC Converters <100 W
      Rugged Environment
      7 - 10
      Edition 2/96 - Melcher AG
      MELCHER
      The Power Partners.
      7.1
      Output Current Allocation for special Types
      Output currents differing from those given for standard
      types (as per "Type Survey") can be provided. A maximum
      output power of 50 W should be considered, if an ambient
      temperature range of –25...71
      °C is required.The maximum
      permissible output currents are indicated in the table below.
      If (upon customer's request) output voltages are different
      from standard values, the relevant output currents have to
      be adapted accordingly.
      With reduced maximum ambient temperature or with forced
      cooling, the total output power may exceed 50 W. Custom-
      ized configurations always need to be checked by a feasi-
      bility study first. Please ask Melcher's sales engineers for a
      proposal appropriate to your specific needs.
      Inhibit (i Input)
      The outputs of the module may be enabled or disabled by
      means of a logic signal (TTL, CMOS, etc.) applied to the
      inhibit input. If the inhibit function is not required, connect
      the inhibit pin 2 to pin 23 to enable the outputs (active low
      logic, fail safe).
      The reference for the inhibit signal is the negative pin of
      output 1.
      Table 8: Current allocation with special types
      Output voltage
      Output 1
      Output 2
      Output 3
      Temperature
      all types
      A...LM 2000
      A...LM 3000
      Uo1/2/3 nom [V]
      Io1 max [A]
      Io2 max [A]
      Io3 max [A]
      TA [°C]
      TC [°C]
      5.1
      8.0
      4.0
      1.8 (2.5 1)
      1.5
      –25...71
      –25...95
      12
      4.0
      2.0
      1.5
      1.2
      15
      3.4
      1.7
      1.2
      1.0
      24
      2.0
      1.0
      0.7
      0.5
      2
      5.1
      10.0
      4.5
      2.1 (2.8 1)
      1.8
      –25...60
      –25...90
      12
      5.0
      2.5
      1.7
      1.5
      15
      4.0
      2.0
      1.5
      1.3
      24
      2.5
      1.3
      0.9
      0.7
      5.1
      11.0
      5.0
      2.4 (3.0 1)
      2.0
      –25...50
      –25...85
      12
      6.0
      3.0
      2.0
      1.7
      15
      4.6
      2.3
      1.7
      1.5
      24
      3.0
      1.5
      1.0
      0.8
      1 Special high current components required, 2 Ui min has to be increased
      Fig. 4
      Typical output voltage Uo1 versus output currents Io
      Vo–
      i
      Vo+
      I
      inh
      U
      inh
      Vi+
      Vi–
      1.6
      0.8
      0
      -0.8
      -50
      -40
      20
      40
      U
      inh [V]
      I
      inh [mA]
      -30
      0
      -20
      -10
      10
      30
      50
      2.0
      1.2
      0.4
      -0.4
      U
      inh= 0.8 V
      U
      o = on
      U
      o = off
      U
      inh= 2.4 V
      1.0
      0
      0.5
      U
      o1
      0.5
      U
      o1 nom
      I
      o
      I
      o nom
      1.0
      1.2
      I
      o nom
      I
      o1
      I
      o2,Io3
      I
      oL1
      I
      oL2,IoL3
      AM...LM and C/D/LMZ
      .95
      Uo
      Io/Io nom
      3/3
      2/3
      1/3
      0
      t
      uod
      t d
      td
      =
      ≥10 s
      Fig. 5
      Control deviation of Uo versus dynamic load change
      Fig. 6
      Definition of inhibit voltage and current
      Fig. 7
      Typical inhibit current Iinh versus inhibit voltage Uinh
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