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LT3092 Datasheet(PDF) 13 Page - Linear Technology |
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LT3092 Datasheet(HTML) 13 Page - Linear Technology |
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13 / 22 page ![]() LT3092 13 3092fb APPLICATIONS INFORMATION interface, heat sink resistance or circuit board-to-ambient as the application dictates. Consider all additional, adjacent heat generating sources in proximity on the PCB. Surface mount packages provide the necessary heat sinking by using the heat spreading capabilities of the PC board, copper traces and planes. Surface mount heat sinks, plated through-holes and solder filled vias can also spread the heat generated by power devices. Junction-to-case thermal resistance is specified from the IC junction to the bottom of the case directly, or the bottom of the pin most directly, in the heat path. This is the lowest thermal resistance path for heat flow. Only proper device mounting ensures the best possible thermal flow from this area of the package to the heat sinking material. Note that the Exposed Pad of the DFN package and the Tab of the SOT-223 package are electrically connected to the output (VOUT). The following tables list thermal resistance as a function of copper areas in a fixed board size. All measurements were taken in still air on a four-layer FR-4 board with 1oz solid internal planes and 2oz external trace planes with a total finished board thickness of 1.6mm. PCB layers, copper weight, board layout and thermal vias affect the resultant thermal resistance. Please reference JEDEC standard JESD51-7 for further information on high thermal conductivity test boards. Achieving low thermal resistance necessitates attention to detail and careful layout. Figure 8. Connect Two LT3092s for Higher Current Figure 9. Parallel Devices 3092 F08 1.33Ω 1.33Ω 300Ω 300Ω IOUT IOUT, 300mA + – LT3092 10μA 10μA + – LT3092 20k 20k IN IN SET SET OUT OUT OUT OUT 3092 F09 IOUT IOUT, 400mA + – LT3092 10μA + – LT3092 10μA R 2.5Ω Rx 50k 40mΩ* 40mΩ* *40mΩ PC BOARD TRACE 1V IN IN SET SET R VR x IN MAX = () • % 90 |
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