at TA = 27°C, VCC = 2.5V, f = 1176MHz (L5 band), source impedance (ZS) = load impedance (ZL) = 50Ω, input matched to 50Ω with L1 = 11nH (0402DC-11NXGRW) and C1 = 10pF (GJM1555C1H100JB01) with input and output configuration as shown in Figure 6-2, de-embedded up to capacitor, C1, on input and RFOUT pin on the output, ambient temperatures shown (unless otherwise noted)
Figure 5-31 Power Gain (S21) Across VCC
Figure 5-33 Reverse Isolation (S12) Across VCC
Figure 5-35 NF Across VCC
Figure 5-37 Power Gain (S21) Across Temperature
Figure 5-39 Reverse Isolation (S12) Across Temperature
| VCC = 1.8V, 5MHz tone spacing | |
Figure 5-41 In-Band IIP3 vs Input Power (PIN) Across Temperature
Figure 5-43 Power Gain (S21) Across Temperature
Figure 5-45 Reverse Isolation (S12) Across Temperature
| VCC = 3.3V, 5MHz tone spacing | |
Figure 5-47 In-Band IIP3 vs Input Power (PIN) Across Temperature
Figure 5-49 In-Band IM3 vs Input Power (PIN) Across VCC
Figure 5-51 Output Power (PO) vs Input Power (PIN) Across VCC
Figure 5-32 Input Return Loss (S11) Across VCC
Figure 5-34 Output Return Loss (S22) Across VCC
Figure 5-36 IP1dB vs VCC Across Temperature
Figure 5-38 Input Return Loss (S11) Across Temperature
Figure 5-40 Output Return Loss (S22) Across Temperature
Figure 5-42 Output Power (PO) vs Input Power (PIN) Across Temperature
Figure 5-44 Input Return Loss (S11) Across Temperature
Figure 5-46 Output Return Loss (S22) Across Temperature
Figure 5-48 Output Power (PO) vs Input Power (PIN) Across Temperature
Figure 5-50 NF vs Temperature Across Frequency
Figure 5-52 Gain and ICC vs PIN Across VCC