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HMC1013LP4E Datasheet(PDF) 1 Page - Hittite Microwave Corporation

Part No. HMC1013LP4E
Description  SUCCESSIVE DETECTION LOG VIDEO AMPLIFIER (SDLVA), 0.5 - 18.5 GHz
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Maker  HITTITE [Hittite Microwave Corporation]
Homepage  http://www.hittite.com
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HMC1013LP4E Datasheet(HTML) 1 Page - Hittite Microwave Corporation

   
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For price, delivery and to place orders: Hittite Microwave Corporation, 2 Elizabeth Drive, Chelmsford, MA 01824
Phone: 978-250-3343
Fax: 978-250-3373
Order On-line at www.hittite.com
Application Support: Phone: 978-250-3343 or apps@hittite.com
HMC1013LP4E
v00.0511
SUCCESSIVE DETECTION LOG VIDEO
AMPLIFIER (SDLVA), 0.5 - 18.5 GHz
The HMC1013LP4E is a Successive Detection Log
Video Amplifier which operates from 0.5 to 18.5 GHz.
The HMC1013LP4E provides a logging range of 67
dB. This device offers typical fast rise/fall times of
5/15 ns and a superior delay time of only 10 ns. The
HMC1013LP4E log video output slope is typically
15 mV/dB. Maximum recovery times are less than
40 ns. The HMC1013LP4E is available in a highly com-
pact 4x4 mm SMT plastic package and is ideal for high
speed channelized receiver applications.
General Description
Features
Functional Diagram
High Logging Range: 67 dB (-62 to +5 dBm)
Output Frequency Flatness: ±2 dB
Log Linearity: ±2 dB
Fast Rise/Fall Times: 5/15 ns
Single Positive Supply: +3.3V
ESD Sensitivity (HBM): Class 1A
24 Lead 4x4mm SMT Package: 16mm2
Typical Applications
The HMC1013LP4E is ideal for:
• EW, ELINT & IFM Receivers
• DF Radar Systems
• ECM Systems
• Broadband Test & Measurement
• Power Measurement & Control Circuits
• Military & Space Applications
Electrical Specifications, TA = +25 °C Vcc1 = Vcc2 = Vcc3= +3.3V, EN=3.3V
Parameter
Conditions
Typ.
Units
Input Frequency Range [1]
0.5 - 18.5
GHz
Frequency Flatness
±2
dB
Log Linearity
Pin = -60 to +5 dBm
±2
dB
Log Linearity over Temperature
±2
dB
Minimum Logging Range
to ±3 dB error
-62
dBm
Maximum Logging Range
to ±3 dB error
+5
dBm
Input Return Loss
8
dB
Log Video Minimum Output Voltage
0.9
V
Log Video Maximum Output Voltage
1.9
V
Log Video Output Rise Time
10% to 90%
5
ns
Log Video Output Fall Time
90% to 10%
15
ns
Log Video Recovery Time
@ 10 GHz
38
ns
Log Video Output Slope
15
mV/dB
Log Video Output Slope Variation over Temperature
@ 10 GHz
6.2
µV/dB°C
Log Video Propagation Delay
10
ns
Supply Current (Icc1)
7
mA
Supply Current (Icc2)
90
mA
Supply Current (Icc3)
86
mA
[1] Video output load should be 1k Ohm or higher.


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