AD8310100VOUT–3dBV10500mV PER–23dBVVERTICAL DIVISION1–43dBVNT (mA)T0.1A = +85°C–63dBV–83dBVCURRE0.01Y L PTPA = +25°CU5V PERENABLES 0.001VERTICAL DIVISION0.0001TA = –40°C200ns PER HORIZONTAL DIVISION 01084-004 0.000010.50.70.91.11.31.51.71.92.12.32.5ENABLE VOLTAGE (V) 01084-003 Figure 15. Supply Current vs. Enable Voltage Figure 18. Power-On/Off Response Time at TA = −40°C, +25°C, and +85°C with RF Input of −83 dBV to −3 dBV 30–9929–10128–103)) 27V –105B dV/dB m 26–107EPT (25C –109 TER24–111SSI SLOPE ( R 23SSI IN R –11322–11521–11720–11911010010001101001000FREQUENCY (MHz)FREQUENCY (MHz) 01084-018 01084-017 Figure 16. RSSI Slope vs. Frequency Figure 19. RSSI Intercept vs. Frequency 4024NORMAL2235(23.6584,0.308728)20NORMAL3018(–107.6338, 2.36064)1625142012COUNTCOUNT 101581064520021.522.022.523.023.524.024.5–115–113–111–109–107–105–103–101–99–97SLOPE (mV/dB)INTERCEPT (dBV) 01084-019 01084-020 Figure 17. Transfer Slope Distribution, VS = 5 V, Frequency = 100 MHz, 25°C Figure 20. Intercept Distribution, VS = 5 V, Frequency = 100 MHz, 25°C Rev. F | Page 8 of 24 Document Outline FEATURES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM GENERAL DESCRIPTION TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS ESD CAUTION PIN CONFIGURATION AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION PROGRESSIVE COMPRESSION SLOPE AND INTERCEPT CALIBRATION OFFSET CONTROL PRODUCT OVERVIEW ENABLE INTERFACE INPUT INTERFACE OFFSET INTERFACE OUTPUT INTERFACE USING THE AD8310 BASIC CONNECTIONS TRANSFER FUNCTION IN TERMS OF SLOPE AND INTERCEPT dBV vs. dBm INPUT MATCHING NARROW-BAND MATCHING GENERAL MATCHING PROCEDURE Step 1: Tune Out CIN Step 2: Calculate CO and LO Step 3: Split CO into Two Parts Step 4: Calculate LM SLOPE AND INTERCEPT ADJUSTMENTS INCREASING THE SLOPE TO A FIXED VALUE OUTPUT FILTERING LOWERING THE HIGH-PASS CORNER FREQUENCY OF THE OFFSET COMPENSATION LOOP APPLICATIONS INFORMATION CABLE-DRIVING DC-COUPLED INPUT EVALUATION BOARD DIE INFORMATION OUTLINE DIMENSIONS ORDERING GUIDE