Tiny SDLVAs Tackle 20-GHz Bandwidth

Analog & Mixed-Signal ICs, Modules, Subsystems & Instrumentation
Tiny SDLVAs Tackle
20-GHz
Bandwidth
TINY SDLVAS TACKLE 20 GHZ BANDWIDTH!
FEATURED ARTICLE
Wideband SDLVAs, 0.01 - 20 GHz
Tiny SDLVAs Tackle
20-GHz
Bandwidth
ilitary system designers are often
faced with processing input signals
over a wide dynamic range. With many
systems, such as direct-finding (DF)
receivers, electronic-intelligence (ELINT)
receivers, electronic-countermeasures (ECM) systems,
radar warning receivers (RWRs), and commercial
instrumentation, it is often necessary to capture and
analyze narrow pulses with large variations in amplitude.
Traditionally, the successive detection log video amplifier
(SDLVA) is the component of choice for this task.
Figure 1. Model HMC613LC4B is a surfacemount SDLVA (shown mounted to a PCB) that
operates from 100 MHz to 20 GHz.
Figure 2. Model HMC-C052 is a miniature
connectorized SDLVA module that operates
from 1 to 20 GHz.
SEPTEMBER 2008
These
high-performance
successive-
detection log-video amplifi ers (SDLVAs)
offer outstanding wide frequency ranges
and dynamic ranges with low power
consumption in compact housings.
Today, when system designers need a high-performance
SDLVA, they have two more choices with outstanding
performance over the wide frequency range of 0.1 to
20.0 GHz. The SDLVA models HMC613LC4B and
HMC-C052 from Hittite Microwave Corp. (Chelmsford,
MA) are supplied in a compact 4 x 4 mm ceramic package
and miniature hermetic module. Respectively, both offer
the signal-processing capability needed to capture and
analyze narrow, high-speed RF pulses over wide dynamic
ranges. The small size and low power requirements of
these SDLVA solutions allows designers to incorporate
this function into systems once limited to alternative signalprocessing approaches, such as portable systems.
The HMC613LC4B SDLVA operates over the 0.1 to 20
GHz frequency range and provides a logging range of
62 dB. It consumes only 83 mA current from a single
+3.3V DC supply when processing RF signals at -30
dBm input power. Ideal for EW and ELINT applications,
the HMC613LC4B is capable of processing RF pulses in
the 0.1 to 20.0 GHz frequency band with amplitudes from
-57 to +5 dBm with only 4 ns rise times and 26 ns of
recovery time.
The HMC613LC4B employs a successive compression
topology which delivers extremely high dynamic range
and conversion accuracy over its wide input frequency
range (Fig. 3). As the input power is increased, successive
RF amplifier stages move into saturation one by one
creating an accurate approximation of the logarithmic
function. The output of a series of detectors is summed
into a single video amplifier for the purpose of providing a
single detected output. When the HMC613LC4B is used
in detection mode, the VIDEO OUT pin is connected to
the Video FB pin via a 0Ω resistor, providing a nominal
logarithmic slope of 14 mV/dB and a typical intercept
of -119 dBm at 10 GHz. The output gain stage of the
HMC613LC4B may be modified by connecting appropriate
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TINY SDLVAS TACKLE 20 GHZ BANDWIDTH!
Wideband SDLVAs, 0.01 - 20 GHz
Figure 3. This block diagram shows the various functions
of the HMC613LC4B SMT SDLVA.
external resistors between the VIDEO OUT and the
VIDEO FB pin, and also between the VIDEO FB pin and
ground. The HMC613LC4B also provides an EN (enable)
pin, which is connected to Vcc (+3.3 VDC) during normal
operation. If the enable pin is connected to ground, the
SDLVA is disabled, and the total supply current is reduced
to less than 3 mA. This is a useful feature for controlling
total system power, particularly in high-speed channelized
receiver designs, where multiple channels/SDLVAs are
deployed.
Figures 4 and 5 show the typical logarithmic error and
video output voltage performance of the HMC613LC4B
over the -40 to +85°C operating temperature range at
2 and 20 GHz. The typical flatness over the 2-to-20-GHz
band from -55 to +5 dBm is shown in Fig. 6. Measurements
on the HMC613LC4B typically reveal better than ± 2 dB
flatness to 20 GHz at a -30-dBm input-power level. The
maximum temperature-related deviation is ±1 dB at any
given frequency and power level over the full operating
temperature range.
The HMC-C052 integrates the HMC613 bare die, a linear
regulator IC, and off-chip components within a hermetically
sealed package that can be used as a connectorized
module (2.92 mm or SMP connectors) or as a MIC dropin design. The HMC-C052 operates from 1 to 20 GHz
and draws only 86 mA of current from a single +7 to +16
VDC supply. (The table compares the key specifications
of the HMC613LC4B and the HMC-C052 SDLVAs.) The
HMC-C052 operates from -55 to +85°C and is housed in
a miniature 22.6 x 21.6 x 5.84 mm package.
Figure 4. This plot shows the video output and log error
vs. input power at 2 GHz for the HMC613LC4B SDLVA.
Figure 5. This plot shows the video output and log error
vs. input power at 20 GHz for the HMC613LC4B SDLVA.
Figure 6. This plot shows gain error flatness vs. input
power from 0.1 to 20 GHz for the HMC613LC4B SDLVA.
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SEPTEMBER 2008
FEATURED ARTICLE
The miniature HMC-C052 module represents a space
savings of more than 85 percent compared with existing
typical broadband connectorized SDLVA modules
with similar performance (Fig. 7). The connectorized
HMC-C052 module can immediately replace existing
broadband SDLVA modules, resulting in a lower-cost,
TINY SDLVAS TACKLE 20 GHZ BANDWIDTH!
FEATURED ARTICLE
Wideband SDLVAs, 0.01 - 20 GHz
Figure 7. A traditional, MIC
hybrid-based SDLVA (top)
requiring both positive and
negative DC power supplies
is shown with the HMC-C052
SDLVA module and the
HMC613LC4B SMT SDLVA.
reduced-power-dissipation (heat) solution occupying a
significantly smaller form factor.
Hittite Microwave’s design philosophy involves the
careful selection of the best semiconductor processes
and design techniques available for each component
solution ensuring the delivery of market-leading product
performance. This performance improvement allows the
systems designer to maximize the true potential of the
design to ultimately deliver a superior product. The block
diagram for a RWR (Fig. 8) shows how a system design
can be optimized by careful section of Hittite Microwave
catalog components. In this application example, the
RWR combines signal filtering, amplification, detection,
and frequency measurement into one multifunction unit.
In such a design, a system engineer is often seeking
to reduce power consumption along with the overall
size and weight of the RWR module. Any reduction in
power consumption and weight renders a double benefit,
particularly in airborne or unmanned-aerial-vehicle
(UAV) applications, as a smaller, lighter power supply is
required. The HMC613LC4B or the HMC-C052 SDLVAs
are key components required to implement the RWR
function, and compared with traditional SDLVA solutions,
provide significant savings in both power consumption
and size for equivalent performance.
Table: Comparing the HMC613LC4B and HMC-C052.
Parameter
HMC613LC4B
HMC-C052
Input frequency range
0.1 to 20.0 GHz
1.0 to 20.0 GHz
62 dB
59 dB
-57 to +5 dBm
-54 to +5 dBm
Logging range
Logarithmic range (±3
dB)1
Logarithmic slope
14 mV/dB
14 mV/dB
Frequency flatness at -30 dBm RF input power
±2 dB
±2 dB
Logarithmic error over temperature
±1 dB
±1 dB
Rise/fall time
4/18
ns2
2/7 ns3
Recovery time
26 ns
21 ns
Output voltage
1.0 to 1.8 V
0.9 to 1.5 V
+3.3 VDC at 83 mA
+7 to +12 VDC at 86 mA
Bias supply
Note 1: Based on linear regression of error curve from input power of -40 dBm to input power of -10 dBm.
Note 2: Rise/fall times measured from no power to 0 dBm.
Note 3: Rise/fall times measured from no power to -20 dBm.
SEPTEMBER 2008
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TINY SDLVAS TACKLE 20 GHZ BANDWIDTH!
Wideband SDLVAs, 0.01 - 20 GHz
FEATURED ARTICLE
Figure 8. This block diagram for a typical RWR front end highlights the high-reliability SMT and connectorized
modules (in red) from Hittite Microwave Corp
The HMC613LC4B or the HMC-C052 SDLVA can be
combined with a number of additional high-performance
catalog components from Hittite Microwave to implement
an RWR capable of measuring signals from 2 to 20
GHz. The simplified block diagram of Fig. 8 shows two
amplitude measurement channels which allow direction
finding by comparing the signal amplitude of the adjacent
antennas. One of the amplitude channels is selected
via the HMC547LP3E single-pole, double-throw (SPDT)
switch and feeds the RWR’s instantaneous-frequencymeasurement (IFM) circuit, thus performing a frequency
measurement on an antenna pair. The HMC613LC4B
SDLVAs provide the logarithmic video voltage signals
which are usually digitized with a series of comparator
circuits, prior to further processing. To meet military/
high-reliability or ruggedized system requirements, the
RWR function may be implemented with hermetically
sealed, connectorized modules (labeled in red) which are
available as stock items.
The SDLVA models HMC613LC4B and HMC-C052
combine wide input bandwidths, wide dynamic range,
and fast rise/fall times with extremely compact packaging
for system-level designers seeking alternatives to
traditional microwave-integrated-circuits (MIC) hybrid and
discrete-based SDLVAs. The HMC613LC4B and
HMC-C052 facilitate accurate logarithmic power
measurement of RF signals in the 0.1-to-20-GHz and
1-to-20-GHz frequency ranges, respectively, in
commercial, military, and space applications, especially
where DC power is a constraining factor. These
SDLVAs are also ideal for a myriad of applications
including RWRs, DF receivers, IFM receivers, EW and
ECM systems, phased-array antennas, radar altimeters,
digital frequency discriminator circuits, and RF test and
measurement equipment.
In addition to these new SDLVA products, Hittite Microwave
continues to expand its product portfolio and designers
can now choose from more than 700 standard products
spanning the frequency range from DC to 110 GHz. The
portfolio includes 18 product lines: amplifiers, attenuators,
data converters, frequency dividers and detectors,
frequency multipliers, high-speed logic, interface ICs,
modulators and demodulators, mixers and converters,
oscillators, passive devices, phase shifters, phaselocked loops (PLLs), power detectors, sensors, switches,
frequency synthesizers, and variable-gain amplifiers
(VGAs). Data sheets and detailed product information
for all Hittite products are available on-line at the Hittite
Microwave Corp. website at www.hittite.com.
Hittite Microwave Corporation
20 Alpha Road Chelmsford, MA 01824
Phone: (978) 250-3343 Fax: (978) 250-3373
[email protected] www.hittite.com
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SEPTEMBER 2008
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