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MICRF219 数据表(PDF) 13 Page - Micrel Semiconductor |
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MICRF219 数据表(HTML) 13 Page - Micrel Semiconductor |
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13 / 23 page ![]() Micrel MICRF219 June 2011 13 M9999-060811 (408) 944-0800 ape additional nd noise. tection for ed to find 50Ω. One using the mith chart easier via a software plot y, the user n for best hing point, ne needs to know the input impedance of the device. Table 3 shows the pe of IC suggested matching val for the most of d frequencies. These sugge d value ay be t if the layout is exactly same he on here: F Z devic Low-Noise Amplifier Input Matching Capacitor C3 and inductor L2 form the “L” sh matching network. The capacitor provides attenuation for low-frequency outside ba The inductor provides additional ESD pro the antenna pin. Two methods can be us these values that best matched near method is done by calculating the values equations below and the other is using a S utility. The latter is made input where components are added on. In this wa can see the impedance moving directio values of C8 and L1 toward to central matc like WinSmith by Noble Publishing. To calculate the matching values, o input im dance the M RF219 and ues ten use ste s m differen not the as t e made req (MHz) C3 (pF) L2(nH) e (Ω) 315 68 33 - j2 1.8 35 390 1.5 47 23 – j199 418 1.5 43 21 – j186 433.92 1.5 39 19 – j174 Table 3. Matching Values for the Most Used Frequencies equency of 433.92MHz, the input impedance – j174.2Ω, then the matching components allel = B = .68msiemens 5kΩ; Xp = 176.2Ω Q = SQRT (Rp/50 + 1) Q = 5.831 Xm = Rp / Q 82.98Ω Resonance Method for L-shape Matching Network Lc = Xp / (2×Pi×f); Lp = Xm / (2×Pi×f) L2 = (Lc×Lp) / (Lc + Lp); C3 = 1 / (2×Pi×f×Xm) L2 = 39.8nH C3 = 1.3pF with the Smith First, one plots the input impedance of the device, (Z = 18.6 – j174.2)Ω @ 433.92MHz.(Figure 5): For the fr is Z = 18.6 are calculated by: Equivalent par 1/Z = 0.606 + j5 Rp = 1 / Re (B); Xp = 1 / Im (B) Rp = 1.6 Xm = 2 Doing the same calculation example Chart, would appear as follows, Figure 5. Device’s Input Impedance, Z = 19 – j174Ω Second, one plots the shunt inductor (39nH) and the series capacitor (1.5pF) for the desired input impedance (Figure 6). One can then see the matching leading to the center of the Smith Chart or close to 50Ω. |
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