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封装信息
封装信息

... High Linearity LNA Gain Block Mechanical Information Package Information and Dimensions This package is lead-free/RoHScompliant. The plating material on the leads is annealed matte tin. The component will be marked with an “9038” designator with an alphanumeric lot code on the top surface of package ...
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Calculated Efficiency for Thermionic Systems

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TQP369184封装信息
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... DC-6 GHz Gain Block Mechanical Information Package Information and Dimensions The component is marked on the top surface of the package with a “184” designator and on the bottom surface with an alphanumeric lot code. ...
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Zener Voltage Regulation and Thermal Resistance

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Thermal Conductive Materials and LED Cooling

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Cascade 6-7-80: 292W, 5700K, 80 Degree

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TQP369182封装信息

... TQP369182 DC-6 GHz Gain Block Mechanical Information Package Marking and Dimensions The component will be marked on the top surface of package with a “369182” designator and an alphanumeric lot code. ...
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Techniques for Thermal Analysis of Switching Power

... that in steady state we would get the same infrared temperature measurement. The dissipated power needed to warm the device up to the same level as with the complete power design running can easily be calculated by multiplying the DC current by the DC voltage drop across the inductor. ...
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... 10 sec / iteration  HspiceTM - 2.5min / iteration ...
< 1 ... 322 323 324 325 326 >

Thermal runaway



Thermal runaway refers to a situation where an increase in temperature changes the conditions in a way that causes a further increase in temperature, often leading to a destructive result. It is a kind of uncontrolled positive feedback.In other words, ""thermal runaway"" describes a process which is accelerated by increased temperature, in turn releasing energy that further increases temperature. In chemistry (and chemical engineering), this risk is associated with strongly exothermic reactions that are accelerated by temperature rise. In electrical engineering, thermal runaway is typically associated with increased current flow and power dissipation, although exothermic chemical reactions can be of concern here too. Thermal runaway can occur in civil engineering, notably when the heat released by large amounts of curing concrete is not controlled. In astrophysics, runaway nuclear fusion reactions in stars can lead to nova and several types of supernova explosions, and also occur as a less dramatic event in the normal evolution of solar mass stars, the ""helium flash"".There are also concerns regarding global warming that a global average increase of 3-4 degrees Celsius above the preindustrial baseline could lead to a further unchecked increase in surface temperatures. For example, releases of methane, a greenhouse gas more potent than CO2, from wetlands, melting permafrost and continental margin seabed clathrate deposits could be subject to positive feedback.
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