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CLC1011ISC5X Datasheet(PDF) 9 Page - Cadeka Microcircuits LLC. |
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CLC1011ISC5X Datasheet(HTML) 9 Page - Cadeka Microcircuits LLC. |
9 / 17 page Data Sheet ©2009 CADEKA Microcircuits LLC www.cadeka.com 9 Application Information General Description The CLCx011 family of amplifiers are single supply, general purpose, voltage-feedback amplifiers. They are fabricated on a complimentary bipolar process, feature a rail-to-rail input and output, and are unity gain stable. Basic Operation Figures 1, 2, and 3 illustrate typical circuit configurations for non-inverting, inverting, and unity gain topologies for dual supply applications. They show the recommended bypass capacitor values and overall closed loop gain equations. Figure 4 shows the typical non-inverting gain circuit for single supply applicaitons. + - Rf 0.1μF 6.8μF Output G = 1 + (Rf/Rg) Input +Vs -Vs Rg 0.1μF 6.8μF RL Figure 1. Typical Non-Inverting Gain Circuit + - Rf 0.1μF 6.8μF Output G = - (Rf/Rg) For optimum input offset voltage set R1 = Rf || Rg Input +Vs -Vs 0.1μF 6.8μF RL Rg R1 Figure 2. Typical Inverting Gain Circuit + - 0.1μF 6.8μF Output G = 1 Input +Vs -Vs 0.1μF 6.8μF RL Figure 3. Unity Gain Circuit + - Rf 0.01µF 6.8μF Out In +Vs + Rg Figure 4. Single Supply Non-Inverting Gain Circuit Power Dissipation Power dissipation should not be a factor when operating under the stated 10k ohm load condition. However, applications with low impedance, DC coupled loads should be analyzed to ensure that maximum allowed junction temperature is not exceeded. Guidelines listed below can be used to verify that the particular application will not cause the device to operate beyond it’s intended operating range. Maximum power levels are set by the absolute maximum junction rating of 150°C. To calculate the junction temperature, the package thermal resistance value ThetaJA (ӨJA) is used along with the total die power dissipation. TJunction = TAmbient + (ӨJA × PD) Where TAmbient is the temperature of the working environment. |
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