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ADRF5740BCCZN-R7 Arkusz danych(PDF) 12 Page - Analog Devices |
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ADRF5740BCCZN-R7 Arkusz danych(HTML) 12 Page - Analog Devices |
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12 / 13 page ![]() ADRF5740 Data Sheet Rev. 0 | Page 12 of 13 APPLICATIONS INFORMATION LAYOUT CONSIDERATIONS All measurements in this data sheet are measured on the ADRF5740-EVALZ-185 evaluation board. The design of the ADRF5740-EVALZ-185 and the ADRF5740-EVALZ-292 serves as a layout recommendation for the ADRF5740 application. See the ADRF5740-EVALZ-185 and the ADRF5740-EVALZ-292 user guide for more information on using the evaluation boards. BOARD LAYOUT The ADRF5740-EVALZ-185 and the ADRF5740-EVALZ-292 are 4-layer evaluation boards. The outer copper (Cu) layers are 0.5 oz (0.7 mil) plated to 1.5 oz (2.2 mil) and are separated by dielectric materials. Figure 25 shows the ADRF5740-EVALZ-185 and the ADRF5740-EVALZ-292 stack up. RO4003 1.5oz Cu (2.2mil) 1.5oz Cu (2.2mil) 0.5oz Cu (0.7mil) 0.5oz Cu (0.7mil) 1.5oz Cu (2.2mil) 1.5oz Cu (2.2mil) W = 16mil G = 6mil T = 2.2mil H = 12mil Figure 25. ADRF5740-EVALZ-185 and ADRF5740-EVALZ-292 Stack Up All RF and dc traces are routed on the top copper layer, whereas the inner and bottom layers are grounded planes that provide a solid ground for the RF transmission lines. The top dielectric material is 12 mil Rogers RO4003, offering optimal high frequency performance. The middle and bottom dielectric materials provide mechanical strength. The overall board thickness is 62 mil, which allows 1.85 mm RF launchers to be connected at the board edges. RF AND DIGITAL CONTROLS The RF transmission lines are designed using a coplanar waveguide (CPWG) model, with a trace width of 16 mil and ground clearance of 6 mil to have a characteristic impedance of 50 Ω. For optimal RF and thermal grounding, as many through vias as possible are arranged around transmission lines and under the exposed pad of the package. The RF input and output ports (ATTIN and ATTOUT) are connected through 50 Ω transmission lines to the 1.85 mm RF launchers. On the VDD and VSS supply traces, a 100 pF bypass capacitor filters high frequency noise. Figure 26 shows the simplified application circuit for the ADRF5740. EPAD ATTIN GND D5 D4 D5 D4 D3 D2 VSS VDD GND ATTOUT ADRF5740 0 Ω 0 Ω LE 0 Ω 100pF VDD TP1 100pF VSS 100pF 0 Ω 100pF 0 Ω 100pF 100pF 100pF ATTIN ATTOUT 1 2 3 4 12 11 10 9 6 5 7 8 16 15 14 13 Figure 26. Simplified Application Circuit |
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