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LC010CL Datasheet(PDF) 14 Page - General Semiconductor |
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LC010CL Datasheet(HTML) 14 Page - General Semiconductor |
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14 / 24 page ![]() 14 14 Lineage Power Data Sheet March 27, 2008 18 Vdc to 36 Vdc or 36 Vdc to 75 Vdc Inputs, 10 W and 15 W LC/LW010- and LC/LW015-Series Power Modules: Test Configurations 8-203(C) Note: Input reflected-ripple current is measured with a simulated source impedance of 12 µH. Capacitor Cs offsets possible battery impedance. Current is measured at the input of the module. Figure 33. Input Reflected-Ripple Test Setup 8-513(C).g Note: Use two 0.47 µF ceramic capacitors. Scope measurement should be made using a BNC socket. Position the load between 50 mm and 75 mm (2 in. and 3 in.) from the module. Figure 34. Peak-to-Peak Output Noise Measurement Test Setup for Single Outputs 8-204(C) Note: All measurements are taken at the module terminals. When socketing, place Kelvin connections at module terminals to avoid measurement errors due to socket contact resistance. Figure 35. Output Voltage and Efficiency Measurement Test Setup for Single Outputs 8-808(C).d Note: Use four 0.47 µF ceramic capacitors. Scope measurement should be made using a BNC socket. Position the load between 50 mm and 75 mm (2 in. and 3 in.) from the module. Figure 36. Peak-to-Peak Output Noise Measurement Test Setup for Dual Outputs 8-863(C).a Note: All measurements are taken at the module terminals. When socketing, place Kelvin connections at module terminals to avoid measurement errors due to socket contact resistance. Figure 37. Output Voltage and Efficiency Measurement Test Setup for Dual Outputs TO OSCILLOSCOPE 12 µH CS 220 µF IMPEDANCE < 0.1 Ω @ 20 ˚C, 100 kHz VI(+) VI(-) BATTERY 33 µF CURRENT PROBE LTEST VO(+) VO(–) 0.47 µF RESISTIVE LOAD SCOPE COPPER STRIP 0.47 µF VI(+) VI(-) VO(+) VO(-) II IO SUPPLY CONTACT RESISTANCE CONTACT AND DISTRIBUTION LOSSES LOAD η VO(+) VO(–) – []IO VI(+) VI(–) – []II ------------------------------------------------ ⎝⎠ ⎛⎞ 100 × = VO1(+ ) VO2(-) 0.47 µF 0.47 µF SCOPE COPPER STRIP SCOPE COM RLOAD1 RLOAD2 0.47 µF 0.47 µF VI(+) II IO SUPPLY CONTACT RESISTANCE CONTACT AND DISTRIBUTION LOSSES LOAD VI(-) VO1 VO2 COM LOAD η VOJ COM – []IOJ J1 = 2 ∑ VI + () VI – () – []II --------------------------------------------------- x100 = |
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