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DUAL OPERATIONAL AMPLIFIERS WITH INTERNAL REFERENCE TL103W FEATURES
DUAL OPERATIONAL AMPLIFIERS WITH INTERNAL REFERENCE TL103W FEATURES

... The TL103W and TL103WA combine the building blocks of a dual operational amplifier and a fixed voltage reference – both of which often are used in the control circuitry of both switch-mode and linear power supplies. OPAMP1 has its noninverting input internally tied to a fixed 2.5-V reference, while ...
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... dimming driver designed to drive an external p-channel in series with the LED string provides wide-range dimming control. This feature provides extremely fast PWM current switching to the LEDs with no transient overvoltage or undervoltage conditions. In addition to PWM dimming, the ICs provide analo ...
BD9111NV
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... Since this IC functions with high efficiency without significant heat generation in most applications, no special consideration is needed on permissible dissipation or heat generation. In case of extreme conditions, however, including lower input voltage, higher output voltage, heavier load, and/or ...
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... There are three types of basic structure on which Full Adder is based static, dynamic and hybrid. Static Full Adder are less power consuming than dynamic and then more reliable. Dynamic Full Adder have faster switching speed, full swing voltage level and less number of transistors but suffer from ch ...
BDTIC www.BDTIC.com/infineon TRENCHSTOP™: IGBT and Diode Optimization
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... designers again. This paper now concentrates on the trade-off and considerations for diodes used in drive applications. Nevertheless, the basic considerations are the same for all applications: Is it useful to have lower absolute static diode losses or does the total system including the IGBT benefi ...
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... The connection of the RON resistor to VIN results into an additional compensation of varying VIN values, (VIN feedforward) so the switching frequency will remain almost constant even during VIN transients. A load current transient (low to high current) allows the off-time to immediately transition t ...
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... Feedback Inout. The FB pin sets the regulated output voltage relative to the internal reference. This pin is connected to a resistor divider from the regulated output such that the FB pin is at 0.8V when the output is at the desired voltage. ...
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... typical requirements that are often placed on Vishay products in generic applications. Such statements are not binding statements about the suitability of products for a particular application. It is the customer’s responsibility to validate that a particular product with the properties described in ...
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... VLSI technology has played a development of portable digital applications, the applications demand for increasing the speed, implementation of a wide range of complex functions, less power dissipation. Mainly it is focusing on power consumption and area reduction of the digital circuits. Power is th ...
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... data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. Motorola does not convey any license under its patent ...
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... in the specified range. In applications where no low input supplies impedance available (PCB inductance in VIN and/or VBIAS inputs as example), the recommended CIN = 1 mF and CBIAS = 0.1 mF or greater. Ceramic capacitors are recommended. For the best performance all the capacitors should be connecte ...
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... (If the pattern needs to be close to the input block, to prevent the LED from lighting during the off state due to the abovementioned coupling, design the input-side circuit so that the bias of the LED is reversed, within the range of the recommended operating conditions, and be sure to thoroughly e ...
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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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