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LM50 and LM50-Q1 SOT-23 Single-Supply Centigrade Temperature
LM50 and LM50-Q1 SOT-23 Single-Supply Centigrade Temperature

... The LM50/LM50-Q1 handles capacitive loading very well. Without any special precautions, the LM50/LM50-Q1 can drive any capacitive load. The LM50/LM50-Q1 has a nominal 2 kΩ output impedance (as can be seen in Figure 17). The temperature coefficient of the output resistors is around 1300 ppm/°C. Takin ...
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... 3 DC Power Connections Many LIGO designs using chassis type implementations can be served with one or two three-pin power feeds. Two such connectors used in the HEPI implementation are shown in Figure 6, Female Power Connector and Figure 7, Male Power Connector. This style connector is available in ...
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... to take it (of course with permission and always reference the source), and state its role, as you understand it at this stage in your study, in operation and protection of power systems. State the approximate physical size and the electric ratings in terms of voltage, current, power, kVA etc. These ...
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... Due to technical requirements, components may contain dangerous substances. For information on the types in question, please contact the nearest Infineon Technologies Office. Infineon Technologies components may be used in life-support devices or systems only with the express written approval of Inf ...
A.S. Jurkov, L. Roslaniec, and D.J. Perreault, “Lossless Multi-Way Power Combining and Outphasing for High-Frequency Resonant Inverters,” IEEE Transactions on Power Electronics , Vol. 29, No. 4, pp. 1894-1908, Apr. 2014.
A.S. Jurkov, L. Roslaniec, and D.J. Perreault, “Lossless Multi-Way Power Combining and Outphasing for High-Frequency Resonant Inverters,” IEEE Transactions on Power Electronics , Vol. 29, No. 4, pp. 1894-1908, Apr. 2014.

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... There are a number of ways to minimize emitter degradation or aging. First, minimize the junction temperature. As long as the junction temperature, TJ, is kept below 100 °C, heating of the pn-junction will cause no significant degradation. To reduce junction temperature, minimize the forward current ...
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Switched-mode power supply



A switched-mode power supply (switching-mode power supply, switch-mode power supply, SMPS, or switcher) is an electronic power supply that incorporates a switching regulator to convert electrical power efficiently. Like other power supplies, an SMPS transfers power from a source, like mains power, to a load, such as a personal computer, while converting voltage and current characteristics. Unlike a linear power supply, the pass transistor of a switching-mode supply continually switches between low-dissipation, full-on and full-off states, and spends very little time in the high dissipation transitions, which minimizes wasted energy. Ideally, a switched-mode power supply dissipates no power. Voltage regulation is achieved by varying the ratio of on-to-off time. In contrast, a linear power supply regulates the output voltage by continually dissipating power in the pass transistor. This higher power conversion efficiency is an important advantage of a switched-mode power supply. Switched-mode power supplies may also be substantially smaller and lighter than a linear supply due to the smaller transformer size and weight.Switching regulators are used as replacements for linear regulators when higher efficiency, smaller size or lighter weight are required. They are, however, more complicated; their switching currents can cause electrical noise problems if not carefully suppressed, and simple designs may have a poor power factor.
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