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selecting the right sensor for temperature measurement
selecting the right sensor for temperature measurement

R e s is tors - T O -2 2 0 P a c k a g e d , T hic k F ilm P o w e r
R e s is tors - T O -2 2 0 P a c k a g e d , T hic k F ilm P o w e r

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... * Chamfering on the front edge of the mounting hole is recommended for ...
2.2nV/Hz Noise, Low-Power, 36V, Operational Amplifier (Rev. D)
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... The input terminals of the OPA209 are protected from excessive differential voltage with back-to-back diodes, as shown in Figure 32. In most circuit applications, the input protection circuitry has no consequence. However, in low-gain or G = 1 circuits, fast ramping input signals can forward-bias th ...
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... Output Current versus VS Iout = f(VS), 2 LEDs load with VF = 3.8V in series, Rext = Parameter. . . . 12 Supply Current versus VS IS = f(VS), 2 LEDs load with VF = 3.8V in series. . . . . . . . . . . . . . . . . . . 12 Output Current versus Rext Iout = f(Rext), VS = 10 V, Vout = 7.6 V . . . . . . . . ...
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... Note: the collector current is not due to forward conduction of the base-collector diode; that diode is reversebiased. Just think of it as “transistor action.” Property 3 gives the transistor its usefulness: a small current flowing into the base controls a much larger current flowing into the collec ...
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... Please be sure to implement in your equipment using the Products safety measures to guard against the possibility of physical injury, fire or any other damage caused in the event of the failure of any Product, such as derating, redundancy, fire control and fail-safe designs. ROHM shall bear no respo ...
Chapter 7 – Troubleshooting
Chapter 7 – Troubleshooting

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Physics 09-Electric Circuits (2016)

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IGBT Die - ON Semiconductor
IGBT Die - ON Semiconductor

... 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. SCILLC does not convey any license under its patent rights nor th ...
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Electric Circuits: Ohm`s Law (Grade 11)

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... expansion along X & Y axis. As a result , gauge A experience a decrease in resistance while the other B undergoes increase in resistance. When these two gauges and gauges on the other sides of the steel are connected to form a bridge circuit, sensitivity is multiplied by four times. So it load cell ...
Chap. 3 Conceptual Modules Fishbane
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... Setting Main Temperature: The operating range for this oven is ambient room temperature + 5°C to 200°C. To set the Main Temperature Controller turn the knob to the desired oven temperature, using the graduated dial as a reference guide. Allow one hour for the temperature to stabilize. Using the refe ...
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... short period of higher than normal inrush current as the magnetic field is established and current flows in both windings. Protective fuse designers use the rule of thumb that the inrush current should not exceed 12 X normal for 0.01 second. Transformer designers limit the inrush current so as not t ...
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Temperature Controller

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... On the other hand, measured values are part of a statistical distribution that can be specified by an interval with upper and lower limits and a probability for measured values to lie within this interval. Unless otherwise stated (e.g. “100 % tested”), the LEM definition for such intervals designate ...
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... be sized above 220uF with a low ESR for SSTL applications with DDR-SDRAM. The value of ESR should be determined by maximum current spikes expected from the DDR memory system to ensure VTT staying within +/-40mV of VREF. Capacitor selection can be varied depending on the number of lines terminated an ...
FSD210 Fairchild Power Switch (FPS)
FSD210 Fairchild Power Switch (FPS)

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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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