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LTM4633 データシート(PDF) 20 Page - Linear Technology |
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LTM4633 データシート(HTML) 20 Page - Linear Technology |
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20 / 32 page ![]() LTM4633 20 4633f For more information www.linear.com/LTM4633 applicaTions inForMaTion loss curves in Figures 8 to 10 and adjusted with the 1.4 multiplier. The printed circuit board is a 1.6mm thick four layer board with two ounce copper for the two outer layers and one ounce copper for the two inner layers. The PCB dimensions are 95mm x 76mm. The BGA heat sinks are listed below Table 4. Temperature Monitoring (TEMP1 and TEMP2) A diode connected PNP transistor is used for the TEMP monitor function by monitoring its voltage over tempera- ture. The temperature dependence of this diode can be understood in the equation: D = nVT ln ID IS where VT is the thermal voltage (kT/q), and n, the ideality factor is 1 for the two diode connected PNPs being used in the LTM4633. Since ID has an exponential temperature dependence that can be understood from the typical em- pirical equation for IS: IS =IOexp –VGO VT whereIOissomeprocessandgeometry-dependentcurrent (IO is typically around 20 orders of magnitude larger than IS at room temperature, so IO is much larger than typical values of ID), and VG0 is the band gap voltage of 1.2V extrapolated to absolute zero of –273°C Kelvin. Figure 4 shows a plot of the diode temperature characteristic of the diode connected PNP transistor biased with a 100ua current source. This plot would extend to the left back to 1.2V at –273°C Kelvin. This curve is stop at –55°C due to the test system limits. If we take the IS equation and substitute into the VD equa- tion, then we get: VD = VGO – kT q ln 10 ID , VT = kT q The expression shows that the junction voltage of the PNP connected diode decreases linearly if IO were constant from a value VG0 of 1.2V at absolute zero to a decreasing value with increased temperature. Figure 4. TEMP Pin Diode Voltage vs Temperature Figure 5. Thermal Plot for 12V Input to 1.8V at 10A Output 1, 1.8V at 10A Output 2, and 5V at 8A Output 3 with 200LFM of Airflow TEMPERATURE (°C) –50 –25 0.3 0.5 0.8 0 50 75 0.4 0.7 0.6 25 100 4633 F04 125 ID = 100µA |
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