LW010A9 Lineage Power, LW010A9 Datasheet
LW010A9
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Data Sheet March 27, 2008 LC/LW010- and LC/LW015-Series Power Modules: 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 15 W The LC/LW010- and LC/LW015-Series Power Modules use advanced, surface-mount technology and deliver high-qual- ...
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... I All — — March 27, 2008 Typ Max Unit — 50 Vdc — 80 Vdc — 100 V — 105* °C — 125 °C — 1500 Vdc Typ Max Unit 24 36 Vdc 48 75 Vdc — 1.6 A — 800 mA — 0 — mAp-p 45 — dB Lineage Power ...
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... Figures 34 and 36.): RMS Peak-to-peak ( MHz) External Load Capacitance * For a 2.5 V output, use the 2 V output module (D code) with an output voltage trim pin (optional feature). Lineage Power 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 15 W (continued) Device Code Symbol ...
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... A — — 8.5 A — — 8.5 A — — 7.5 A — — 4.5 A — — 4.5 A — — — — 7.5 A — — — — 3.5 A — — 3.5 A — — 6.0 A — — 3.5 A — — 3.5 A Lineage Power ...
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... For a 2.5 V output, use the 2 V output module (D code) with an output voltage trim pin (optional feature). Table 3. Isolation Specifications Parameter Isolation Capacitance Isolation Resistance Lineage Power 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 15 W (continued) Device Code Symbol or Suffix η ...
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... Min Typ Max I — — 1.0 on/off –0.7 — 1.2 on/off — — 10 on/off I — — 50 on/off — — 1.2 on/off — delay — delay T — 0.2 5 rise — — — 5 Lineage Power Unit hours hours g (oz.) s Unit µ ...
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... INPUT VOLTAGE, V Figure 1. LC010 Input Current vs. Input Voltage and ° max C Lineage Power 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 15 W (continued) Device Code Symbol or Suffix clamp clamp clamp clamp clamp AJ ...
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... O2 Output1 with Fixed ° LOW LINE NOM LINE HIGH LINE I 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 OUTPUT CURRENT 0.1 A and I varies vs. I with Fixed °C C Lineage Power 0.8 0.9 1.0 8-1790(C) 0.8 0.9 1.0 8-1791(C) ...
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... I varies max O2 Figure 9. Lx010BK, CL Load Regulation of Output1 with Fixed Normalized V vs. Normalized Current I O1 Lineage Power 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 15 W 1.023 1.020 1.016 1.013 1.010 1.007 1.003 1.000 0.996 0.6 0.7 0.8 0.9 1 ...
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... NORMALIZED OUTPUT CURRENT 1 WITH OUTPUT CURRENT 2 SET max ( max , . O max Current vs. Normalized Output Voltage °C with Other Output max 0.5 1.0 1.5 2.0 2.5 OUTPUT CURRENT, I (A) O Current °C C Lineage Power 3.5 4.0 8-1798(C) 3.0 8-1800(C) ...
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... OUTPUT CURRENT, I Figure 17. LC010D and LC015D Typical Efficiency vs. Output Current 0.0 0.5 1.0 1.5 OUTPUT CURRENT, I Figure 18. LC015F Typical Efficiency vs. Output Current °C C Lineage Power 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 0.64 0.80 0.96 Figure 19. LC010A Typical Efficiency vs ...
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... OUTPUT CURRENT, I (A) O Current ° 0.0 0.14 0.20 0.43 0.57 0.71 NORMALIZED OUTPUT CURRENT ( max Normalized Output Current 0.5 1.0 1.5 2.0 OUTPUT CURRENT, I (A) O Current °C C Lineage Power 3.0 8-1861( 0.86 1.0 ) 8-1860( °C C 2.5 8-1859(C) ...
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... TIME, t (100 µs/div) Figure 30. Single-Output Typical Output Voltage for Step Load Change from 50 max Lineage Power 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 15 W 1.0 1.0 0.7 0.8 0.9 1 max 8-1858( °C C Figure 31. Typical Output Voltage Start-Up when 8-1857(C) Figure 32 ...
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... SCOPE 0.47 µF 0.47 µF SCOPE (-) Measurement Test Setup for Dual Outputs CONTACT AND DISTRIBUTION LOSSES (+) COM V V (-) ∑ – V COM -------------------------------------------------- - x 100 [ + ( ) – – Measurement Test Setup for Dual Outputs Lineage Power R LOAD1 R LOAD2 8-808(C).d LOAD LOAD 8-863(C).a ...
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... V O, clamp, max redundant voltage-control that reduces the risk of output overvoltage. Lineage Power 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 15 W Current Limit To provide protection in a fault (output overload) condi- tion, the unit is equipped with internal current-limiting circuitry and can endure current limiting for an unlim- ited duration ...
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... H ⎠ March 27, 2008 5110 2050 2.5 10,000 5110 9.5 10,000 5110 NA 5110 2050 0.76 5110 2050 0.75 (–) terminals. O (+) V (+) O TRIM R adj-up (-) V (-) O Voltage Lineage Power L 2.5 2.5 2.5 1.23 2.5 R LOAD 8-715(C).d ...
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... Ordering Informa- tion table. Lineage Power 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 15 W Heat Transfer Characteristics Increasing airflow over the module enhances the heat transfer via convection ...
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... A 8-1376(C).a Figure 47. LC015B, C Typical Power Dissipation vs. March 27, 2008 0.5 1.0 1.5 2.0 2.5 OUTPUT CURRENT Case Temperature 0.16 0.32 0.48 0.64 0.80 NORMALIZED OUTPUT CURRENT ( max Normalized Output Current at T Lineage Power 3.0 8-1382( max 0.96 ) 8-1808( °C C ...
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... Note: The power dissipation of this unit is shown at T because the efficiency of this power module drops at high temperatures. Figure 49. LC015F Typical Power Dissipation vs. Output Current at Maximum Case Temperature Lineage Power 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 15 W (continued) 4.0 3.5 3.0 2 ...
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... O 8-1815(C) March 27, 2008 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 OUTPUT CURRENT, I (A) O Output Current °C with Output C Voltage Trimmed 0.5 1.0 1.5 2.0 2.5 OUTPUT CURRENT Case Temperature Lineage Power 1.8 2.0 8-2109(C) 3.0 8-1385( max ...
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... Figure 60. LW010AJ, BK, CL Typical Power Dissipation vs. Normalized Output Current °C C Lineage Power 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 15 W Module Derating (continued) The derating curves in Figures 43 through 45 were determined by measurements obtained in an experi- mental apparatus shown in Figure 61. Note that the module and the printed-wiring board (PWB) that it is mounted on are both vertically oriented ...
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... MIN 0.63 (0.025) x 0.63 (0.025) SQUARE PIN, ALL PLACES 4 12.7 24.77 (0.500) (0.975 Function V (+) or V (+) O O1 COMMON (dual outputs) or TRIM (optional on single outputs) Pin is not present on single outputs unless option is specified. Pin is always present on dual outputs. V (– (– Lineage Power 8-1329(C).b ...
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... V— 3 V— V— V— V— V— V—75 V ± V—75 V ± V—75 V ±15 V Lineage Power 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs and 15 W 27.94 7.62 (0.300) (1.10) 5.08 (0.200) 15.2 20.32 (0.800) (0.60) 50.8 (2.00) Output Power ...
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... Lineage Power reserves the right to make changes to the produc t(s) or information contained herein without notice. No liability is ass umed as a res ult of their use or applic ation. No rights under any patent acc ompany the sale of any oduct information. ...