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MCP6213 Folha de dados(PDF) 25 Page - Microchip Technology |
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MCP6213 Folha de dados(HTML) 25 Page - Microchip Technology |
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25 / 68 page ![]() 2009-2021 Microchip Technology Inc. and its subsidiaries DS20002188E-page 25 MCP621/1S/2/3/4/5/9 Figure 4-7 shows a capacitive load (CL), which is driven by a sine wave with DC offset. The capacitive load causes the op amp to output higher currents at higher frequencies. Because the output rectifies IOUT, the op amp’s dissipated power increases (even though the capacitor does not dissipate power). FIGURE 4-8: Diagram for Capacitive Load Power Calculations. The output voltage is assumed to be: EQUATION 4-4: The op amp’s currents are: EQUATION 4-5: The op amp’s instantaneous power, average power and peak power are: EQUATION 4-6: The power dissipated in a package depends on the powers dissipated by each op amp in that package: EQUATION 4-7: The maximum ambient-to-junction temperature rise ( TJA) and junction temperature (TJ) can be calculated using the maximum expected package power (PPKG), ambient temperature (TA) and the package thermal resistance ( JA) found in Table 1-4: EQUATION 4-8: The worst-case power derating for the op amps in a particular package can be easily calculated: EQUATION 4-9: Several techniques are available to reduce TJA for a given package: • Reduce JA - Use another package - Improve the PCB layout (ground plane, etc.) - Add heat sinks and air flow • Reduce max (PPKG) - Increase RL - Decrease CL - Limit IOUT using RISO (see Figure 4-9) - Decrease VDD CL VDD VOUT IDD ISS IOUT VSS MCP62X VOUT VDC VAC t sin + = Where: VDC =DC offset (V) VAC = Peak output swing (VPK) = Radian frequency (2 f) (rad/s) IOUT CL dVOUT dt ----------------- VACCL t cos == IDD IQ max 0 IOUT , + ISS I – Q min 0 IOUT , + Where: IQ = Quiescent supply current for one op amp (mA/amplifier) POA IDD VDD VOUT – I SS VSS VOUT – + = ave POA VDD VSS – I Q 4VAC fCL ------------------------ + = max POA VDD VSS – I Q 2VAC fCL + = PPKG POA k1 = n = Where: n = Number of op amps in package (1 or 2) T JA PPKGJA = TJ TA TJA + = PPKG TJmax TA – JA -------------------------- Where: TJmax = Absolute maximum junction temperature (°C) TA = Ambient temperature (°C) |
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