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MRF49XA-I/T датащи(PDF) 74 Page - Microchip Technology |
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MRF49XA-I/T датащи(HTML) 74 Page - Microchip Technology |
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74 / 102 page ![]() MRF49XA DS70590C-page 74 Preliminary © 2009-2011 Microchip Technology Inc. 4.2 Antenna Design Considerations The MRF49XA is designed to drive a differential output, such as a dipole antenna or a loop antenna. The loop antenna is ideally suited for applications where compact size is required. The dipole is typically not a good option for compact designs due to its inherent size at resonance, and its space requirements around the ground plane, to be an efficient antenna. A monopole antenna can be used, along with a balun, or by using the matching circuit. 4.3 RF Transmitter Matching The RF pins are of high impedance and differential value. The optimum differential load for the RF port at a given frequency band is shown in Table 4-1. These load values in the table are expected by the RF port pins to have as an antenna load for maximum power transfer. Antennas that are suited for such values would be a Loop, Dipole and Folded Dipole. For all antenna applications, either a bias, choke inductor or coils must be included during transmission since the RF outputs are of open-collector type. 4.4 General PCB Layout Design The guidelines in this section help the users in high-frequency PCB layout design. The printed circuit board is usually comprised of two or four basic FR4 layers. The two-layer printed circuit board has mixed signal/power/RF and common ground routed in both the layers. The four-layer printed circuit board is comprised of the following layers: • Signal layout • RF ground • Power line routing • Common ground The four-layer PCB is shown in Figure 4-4. FIGURE 4-3: TWO BASIC COPPER FR4 LAYERS FIGURE 4-4: FOUR BASIC COPPER FR4 LAYERS TABLE 4-1: FREQUENCY BAND – ANTENNA ADMITTANCE/IMPEDANCE MRF49XA Admittance (ms) Impedance ( Ω) Inductance (nH) 433 MHz 2–j5.9 52+j152 62 868 MHz 1.2–j11.9 7.8+j83 15.4 915 MHz 1.49–j12.8 9+j77 13.6 Signal/Power/RF and Common Ground Dielectric Constant = 4.5 Signal/Power/RF and Common Ground Ground Power Line Routing RF Ground Signal Layout Dielectric Constant = 4.5 Dielectric Constant = 4.5 Dielectric Constant = 4.5 |
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