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MCP6L94T Datasheet(PDF) 4 Page - Microchip Technology |
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MCP6L94T Datasheet(HTML) 4 Page - Microchip Technology |
4 / 30 page MCP6L91/1R/2/4 DS22141A-page 4 © 2009 Microchip Technology Inc. 1.3 Test Circuit The circuit used for most DC and AC tests is shown in Figure 1-1. This circuit can independently set VCM and VOUT; see Equation 1-1. Note that VCM is not the circuit’s common mode voltage ((VP +VM)/2), and that VOST includes VOS plus the effects (on the input offset error, VOST) of temperature, CMRR, PSRR and AOL. EQUATION 1-1: FIGURE 1-1: AC and DC Test Circuit for Most Specifications. TABLE 1-2: AC ELECTRICAL SPECIFICATIONS Electrical Characteristics: Unless otherwise indicated, TA = +25°C, VDD = +5.0V, VSS = GND, VCM = VSS, VOUT ≈ VDD/2, VL = VDD/2, RL = 10 kΩ to VL and CL = 60 pF (refer to Figure 1-1). Parameters Sym Min Typ Max Units Conditions AC Response Gain Bandwidth Product GBWP — 10 — MHz Phase Margin PM — 65 — ° G = +1 Slew Rate SR — 7 — V/µs Noise Input Noise Voltage Eni —2.5 — µVP-P f = 0.1 Hz to 10 Hz Input Noise Voltage Density eni —9.4 — nV/ √Hz f = 10 kHz Input Noise Current Density ini —3— fA/ √Hz f = 1 kHz TABLE 1-3: TEMPERATURE SPECIFICATIONS Electrical Characteristics: Unless otherwise indicated, all limits are specified for: VDD = +2.4V to +6.0V, VSS = GND. Parameters Sym Min Typ Max Units Conditions Temperature Ranges Specified Temperature Range TA -40 — +125 °C Operating Temperature Range TA -40 — +125 °C (Note 1) Storage Temperature Range TA -65 — +150 °C Thermal Package Resistances Thermal Resistance, 5L-SOT-23 θ JA —256 — °C/W Thermal Resistance, 8L-SOIC (150 mil) θ JA —163 — °C/W Thermal Resistance, 8L-MSOP θ JA —206 — °C/W Thermal Resistance, 14L-SOIC θ JA —120 — °C/W Thermal Resistance, 14L-TSSOP θ JA —100 — °C/W Note 1: Operation must not cause TJ to exceed Maximum Junction Temperature specification (150°C). G DM R F RG ⁄ = V CM V P V DD 2 ⁄ + () 2 ⁄ = V OUT V DD 2 ⁄ () V P V M – () V OST 1 G DM + () ++ = Where: GDM = Differential Mode Gain (V/V) VCM = Op Amp’s Common Mode Input Voltage (V) VOST = Op Amp’s Total Input Offset Voltage (mV) V OST V IN– V IN+ – = VDD MCP6L9X RG RF VOUT VM CB2 CL RL VL CB1 100 k Ω 100 k Ω RG RF VDD/2 VP 100 k Ω 100 k Ω 60 pF 10 k Ω 1µF 100 nF VIN– VIN+ CF 6.8 pF CF 6.8 pF |
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