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ADL5802ACPZ-R7 数据表(PDF) 4 Page - Analog Devices |
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ADL5802ACPZ-R7 数据表(HTML) 4 Page - Analog Devices |
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4 / 32 page ![]() ADL5802 Rev. 0 | Page 4 of 32 Parameter Test Conditions/Comments Min Typ Max Unit Input Second Order Intercept7 f CENT = 2500 MHz 47 dBm Input 1 dB Compression Point 13 dBm LO to IF Output Leakage Unfiltered IF output 36 dBm LO to RF Input Leakage 31 dBm RF to IF Output Isolation 26 dBc RFI1 to RFI2 Channel Isolation 42 dBc IF/2 Spurious8 0 dBm input power −52 dBc IF/3 Spurious8 0 dBm input power −56 dBc DYNAMIC PERFORMANCE at f RF = 3500 MHz 12 Power Conversion Gain13 −0.5 dB Voltage Conversion Gain4 5.5 dB SSB Noise Figure 12.5 dB SSB Noise Figure Under Blocking14 f CENT = 3500 MHz 18 dB Input Third Order Intercept5 f CENT = 3500 MHz 25 dBm Input Second Order Intercept7 f CENT = 3500 MHz 39 dBm Input 1 dB Compression Point 13 dBm LO to IF Output Leakage Unfiltered IF output 33 dBm LO to RF Input Leakage 28 dBm RF to IF Output Isolation 31 dBc RFI1 to RFI2 Channel Isolation 39 dBc IF/2 Spurious8 0 dBm input power −46 dBc IF/3 Spurious8 0 dBm input power −63 dBc DYNAMIC PERFORMANCE at f RF = 5500 MHz 15 Power Conversion Gain16 −3 dB Voltage Conversion Gain4 5.67 dB SSB Noise Figure 14 dB SSB Noise Figure Under Blocking17 f CENT = 5800 MHz 17 dB Input Third Order Intercept5 f CENT = 5500 MHz 23 dBm Input Second Order Intercept7 f CENT = 5500 MHz 35 dBm Input 1 dB Compression Point 13 dBm LO to IF Output Leakage Unfiltered IF output 42 dBm LO to RF Input Leakage 27 dBm RF to IF Output Isolation 50 dBc RFI1 to RFI2 Channel Isolation 33 dBc IF/2 Spurious8 0 dBm input power −49 dBc IF/3 Spurious8 0 dBm input power −64 dBc 1 Z0 is the characteristic impedance assumed for all measurements and the PCB. 2 Supply voltage must be applied from an external circuit through choke inductors. 3 Excluding 4:1 IF port transformer (TC4-1W+), RF and LO port transformers (TC1-1-13M+), and PCB loss. 4 ZSOURCE = 50 Ω, differential; ZLOAD = 200 Ω, differential 5 dBm; ZSOURCE is the impedance of the source instrument; ZLOAD is the load impedance at the output. 5 fRF1 = fCENT, fBLOCKER = (fCENT − 5) MHz, fLO = (fCENT − 153) MHz, blocker level = 0 dBm. 6 fRF1 = (fCENT − 1) MHz, fRF2 = fCENT, fLO = (fCENT − 153) MHz, each RF tone at −10 dBm. 7 fRF1 = fCENT, fRF2 = (fCENT + 100) MHz, fLO = (fCENT − 153) MHz, each RF tone at −10 dBm. 8 For details, see the Spur Performance section. 9 VS= 5 V, VSET = 4.5 V, TA = 25°C, fLO = (fRF − 211) MHz, LO power = 0 dBm, Z0 = 50 Ω. 10 Excluding 4:1 IF port transformer (TC4-1W+), RF and LO port transformers (2500BL14M050), and PCB loss. 11 fRF1 = fCENT, fBLOCKER = (fCENT − 5) MHz, fLO = (fCENT − 235) MHz, blocker level = 0 dBm. 12 VS = 5 V, VSET = 5 V, TA = 25°C, fLO = (fRF − 153) MHz, LO power = 0 dBm, Z0 = 50 Ω. 13 Including 4:1 IF port transformer (TC4-1W+), RF and LO port transformers (3600BL14M050), and PCB loss. 14 fRF1 = fCENT, fBLOCKER = (fCENT − 5) MHz, fLO = (fCENT − 153) MHz, blocker level = −20 dBm. 15 VS= 5 V, VSET = 4.8 V, TA = 25°C, fLO = (fRF − 380) MHz, LO power = 0 dBm, Z0 = 50 Ω. 16 Including 4:1 IF port transformer (TC4-1W+), RF and LO port transformers (5400BL15B050), and PCB loss. 17 fRF1 = fCENT, fBLOCKER = (fCENT − 5) MHz, fLO = (fCENT − 300) MHz, blocker level = −20 dBm. |
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