at TA ≅ 25°C, AV = 10V/V,
RF = 1.24kΩ, RL = 50Ω, RS = 2.5Ω,
RADJ = 0Ω, and full-bias mode, RF = 2kΩ for ultra-low-bias
mode(unless otherwise noted)
Figure 5-1 Small-Signal Frequency Response
SGCC
HPLC profile, full-bias mode |
Figure 5-3 Out-of-Band Suppression
SGCC
HPLC profile, low-bias mode |
Figure 5-5 Out-of-Band SuppressionFigure 5-7 Small-Signal Frequency Response vs RF Figure 5-9 Large-Signal Frequency Response vs VO Figure 5-11 Small-Signal Frequency Response vs Bias Modes Figure 5-13 Large-Signal Frequency Response vs Bias Modes Figure 5-15 Harmonic Distortion vs Frequency Figure 5-17 Harmonic Distortion vs VO Figure 5-19
Large-Signal Pulse Response Figure 5-21 Open-Loop Transimpedance Gain and Phase vs Frequency
Ultra-low-bias simulation |
Figure 5-23 Open-Loop Transimpedance Gain and Phase vs Frequency
VS = ±6V, DGND =
VS– |
B1 = full-bias to mid-bias transition with B2
= DGND, |
B2 = full-bias to low-bias transition with B1
= DGND |
Figure 5-25 Mode
Transition Voltage ThresholdFigure 5-2 Large-Signal Frequency Response
SGCC
HPLC profile, mid-bias mode |
Figure 5-4 Out-of-Band Suppression
SGCC
HPLC profile, ultra-low-bias mode |
Figure 5-6 Out-of-Band SuppressionFigure 5-8 Small-Signal Frequency Response vs RF Figure 5-10 Large-Signal Frequency Response vs VO Figure 5-12 Small-Signal Frequency Response vs Bias Modes Figure 5-14 Large-Signal Frequency Response vs Bias Modes Figure 5-16 Harmonic Distortion vs VO Figure 5-18 Small-Signal Pulse Response Figure 5-20 Open-Loop Transimpedance Gain and Phase vs Frequency Figure 5-22 Open-Loop Transimpedance Gain and Phase vs Frequency Figure 5-24 Open-Loop Output Impedance vs Frequency