HMC813
v02.0913 POWER DETECTORS -CHIP SUCCESSIVE DETECTION LOG VIDEO AMPLIFIER (SDLVA)
WITH LIMITED RF OUTPUT, 1 -26 GHz
Typical Applications Features The HMC813 is ideal for: 1 to 26 GHz Operation • EW, ELINT & IFM Receivers High Logging Range: 55 dB • DF Radar Systems Frequency Flatness: ±1.5 dB • ECM Systems Saturated Output Power: -7 dBm • Broadband Test & Measurement Fast Rise/Fall Times: 4/10 ns • Power Measurement & Control Circuits Single Positive Supply: +3.3V • Military & Space Applications ESD Sensitivity (HBM): Class 1A
-55 to +85° C Operating Temperature Functional Diagram General Description
The HMC813 is a Successive Detection Log Video
Amplifier (SDLVA) With Limited RF which operates
from 1 to 26 GHz. The HMC813 provides a logging
range of 55 dB. This device offers typical fast rise/fall
times of 4/10 ns. The HMC813 log video output slope is
typically 14.5 mV/dB. Maximum recovery times are less
than 20 ns. Ideal for high speed channelized receiver
applications, the HMC813 operates from a single
+3.3 V supply, and consumes only 150 mA. All data
shown herein is measured with the chip in a 50 Ohm
environment and contacted with RF probes. Electrical Specifications, TA = +25 °C, Vcc1 = Vcc2 = Vcc3 = Vcc4 = 3.3V [1]
Parameter Conditions Typ. Units 1 -26 GHz Pin= -25 dBm ±1.5 dB Pin= -40 dBm to +0 dBm ±1 dB Input Frequency Range[2]
Frequency Flatness (Video out)
Log Linearity -55 to +85° C, Pin= -20 dBm ±0.5 dB Minimum Logging Range Log Linearity over Temperature to ±3 dB error @ 18 GHz -53 dBm Maximum Logging Range to ±3 dB error @ 18 GHz 6 dBm -7 dBm Saturated Output Power, Psat
Saturated Output Power Flatness ±2.5 dB RF Input Return Loss 7 dB RF Output Return Loss 13 dB Log Video Minimum Output Voltage 0.875 V Log Video Maximum Output Voltage 1.65 V Log Video Output Rise Time Pin = 0 dBm, 10% to 90% 4 ns Log Video Output Fall Time Pin = 0 dBm, 90% to 10% 10 ns [1] Electrical specs and performance plots are given for single-ended operation.
[2] Video output load should be 1K Ohm or higher. 1 Information furnished by Analog Devices is believed to be accurate and reliable. However, no
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