link to page 10 link to page 10 link to page 10 link to page 10 ADL5725Data SheetEVALUATION BOARD The ADL5725-EVALZ comes with an ADL5725 chip. It supports RESULTS a single 5 V supply for ease of use. For 5 V operation, use the Figure 18 shows the expected results when testing the 3.3 V and 1.8 V test loops for evaluation purposes only. When ADL5725-EVALZ using the Rev. A version of the evaluation using a 3.3 V or 1.8 V supply, remove the R1 and R2 resistors board and its software. Note that future iterations of the software from the evaluation board. Figure 19 shows the ADL5725- may produce different results. See the ADL5725 product page EVALZ evaluation board lab bench setup. for the most recent software version. INITIAL SETUP Figure 18 shows the results of the differential output for an input To set up the ADL5725-EVALZ, take the following steps: of 17.7 GHz at −15 dBm. The hybrid and board loss were not 1. Power up the ADL5725-EVALZ with a 5 V dc supply. The deembedded. supply current of the evaluation board is approximately 20 RESOLUTION BANDWIDTH = 20kHzVIDEO BANDWIDTH = 20kHz1 111 mA, which is a combination of the VCC1 (1.8 V) and 10 SWEEP = 301ms (1001pts) the VCC2 (3.3 V) currents. 0 2. Connect the signal generator to the input of the ADL5725- –10 EVALZ. Bm) (d –20 3. Connect RFOP and RFON to a 180° hybrid that works UT P within the 17.7 GHz to 19.7 GHz frequency range. UT –30 4. Connect the difference output of the hybrid to the R O E –40 spectrum analyzer. The sum port of hybrid must be W O P –50 terminated to 50 Ω. –60 See Figure 19 for the ADL5725-EVALZ lab bench setup. –70 1 –80 -02 17.65 17.66 17.67 17.68 17.69 17.70 17.71 17.72 17.73 17.74 17.75 318 FREQUENCY (GHz) 14 Figure 18. Test Results at 17.7 GHz +5V DCGNDRFONSPECTRUMANALYZERINPUTRFOPRF FREQUENCY GENERATOR180° HYBRID FOR DIFFERENTIALTO SINGLE ENDED OUTPUT 20 0 8- 31 14 Figure 19. ADL5725-EVALZ Lab Bench Setup Rev. 0 | Page 10 of 12 Document Outline FEATURES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM GENERAL DESCRIPTION TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS AC SPECIFICATIONS DC SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS THERMAL RESISTANCE ESD CAUTION PIN CONFIGURATION AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION APPLICATIONS INFORMATION LAYOUT DIFFERENTIAL vs. SINGLE-ENDED OUTPUT EVALUATION BOARD INITIAL SETUP RESULTS BASIC CONNECTIONS FOR OPERATION OUTLINE DIMENSIONS ORDERING GUIDE