AD830925–10324–10423–10522–10621–10720–10819–109RSSI SLOPE – mV/dB 18RSSI INTERCEPT – dBV –11017–11116–11215–11311010010001101001000FREQUENCY – MHzFREQUENCY – MHz Figure 13. RSSI Slope vs. Frequency Using Termination of Figure 16. RSSI Intercept vs. Frequency Using Termina- 52.3 Ω in Series with 4.7 nH tion of 52.3 Ω in Series with 4.7 nH 2ns PER HORIZONTAL DIVISION141210LIMITER OUTPUTS 100mV PER VERTICAL DIVISIONADDITIONAL SUPPLY CURRENT86CURRENT – mA422mV PER VERTICAL DIVISIONLIMITER OUTPUT CURRENT0 050100150200250300350400450RLIM – V Figure 14. Limiter Output at 300 MHz for a Sine Wave Figure 17. Additional Supply Current and Limiter Out- Input of –60 dBV (–47 dBm), Using an RLOAD of 50 Ω and an put Current vs. RLIM RLIM of 100 Ω 108LMLO6TA = +85 8 CLMHI4TA = –40 8 C2LIMITER OUTPUTS 50mV PER VERTICAL DIVISION0INPUT–2NORMALIZEDTA = +25 8 C–41mV PER VERTICAL DIVISION–6LIMITER PHASE RESPONSE – Degrees12.5ns PER HORIZONTAL–8DIVISION–10–60–50–40–30–20–10010INPUT LEVEL – dBm Re 50 V Figure 15. Limiter Response at LMHI, LMLO with Pulsed Figure 18. Normalized Limiter Phase Response vs. Input Sine Input of –70 dBV (–57 dBm) at 50 MHz; RLOAD = 50 Ω, Level. Frequency = 100 MHz; TA = –40°C, +25°C and +85°C RLIM = 200 Ω –6– REV. B