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MICRF102 Datasheet(PDF) 9 Page - Micrel Semiconductor |
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MICRF102 Datasheet(HTML) 9 Page - Micrel Semiconductor |
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9 / 12 page ![]() December 2006 9 MICRF102 MICRF102 Micrel Design Examples Complete reference designs including gerber files can be downloaded from Micrel’s website at: www.micrel.com/prod- uct-info/qwikradio.shtml. Antenna Characteristics In this design, the desired loop inductance value is determined according to the table below. Freq. R XL Ind Q K (MHz) ( Ω) ( Ω) (nH) (XL/R) 300 1.7 84.5 44.8 39.72 0.83 315 2.34 89.3 45.1 39.65 0.85 390 3.2 161 47.4 52.00 0.90 434 2.1 136 50.0 78.33 0.96 The reference design, shown in Figure 7, has an antenna meeting this requirement. Figure 7. Demo Board PCB. Loop antennas are often considered highly directional. In fact small loop antennas can achieve transmit patterns close in performance to a Dipole antenna. The radiation pattern below is the theoretical radiation pattern for the antenna, as shown in Figure 8. E-total, phi = 0¡ E-total, phi = 90¡ (180-phi) direction phi direction 30.0 180.0 60.0 120.0 150.0 150.0 120.0 60.0 30.0 0.0 Figure 8. Polar Elevation Pattern at 315MHz. The 0 degree plot is the radiation pattern in the plane of the transmitter PCB, the 90 degree plot represents the plane perpendicular to the PCB. Micrel’s evaluation of the perfor- mance of the board in Figure 8 indicates an even more uniform radiation pattern that the theoretical plot shown here. Supply Bypassing Supply bypassing consists of three capacitors; C3 = 4.7µF, C4 = 0.1µFand C5 = 100pF C4 0.1 µF 16V C5 100pF 50V C3 4.7 µF 16V +5VTX VDD VSS MICRF102 2 3 PC 1 ASK 8 ANTP 7 ANTM 6 SB 5 REFOSC 4 Figure 9. Supply Bypassing Example to Calculate C S and CP Antenna Inductance Calculation Length_mils = 2815 dmils = 70 k = 0.85 Length Length_mils 25.4 1000 Length 71.501 = × () = d dmils d = × () = 25 4 1000 1 778 . . L 0.2 Length ln Length d 1.6 10 k L44 10 9 9 =× × − ⎛ ⎝⎜ ⎞ ⎠⎟ ×× =× − − Where Length and d are in mm and L is in H; Where k is a constant dependent on PCB material, copper thickness, etc. MICRF102 Series Capacitor Calculation: f = 315 × 106 L = 46 × 10-9 CVAR = 5 × 10-12 CP = 12 × 10-12 C fL C T T = ×× × =× − 1 4 2 587 10 22 12 ππ . C CC C SERIES TVAR SERIES = − =× − 1 11 82 10 12 . MICRF102 Series Capacitor Calculation: f = 433.92 × 106 L = 52 × 10-9 CVAR = 5 × 10-12 CP = 2.7 × 10-12 C fL C T T = ×× × =× − 1 4 2 587 10 22 12 ππ . |
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