REV. D
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a
AD641
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781/329-4700 World Wide Web Site: http://www.analog.com
Fax: 781/326-8703 © Analog Devices, Inc., 1999-2016
250 MHz Demodulating
Logarithmic Amplifier
FEATURES
Logarithmic Amplifier Performance
Usable to 250 MHz
44 dB Dynamic Range
2.0 dB Log Conformance
37.5 mV/dB Voltage Output
Stable Slope and Intercepts
2.0 nV/Hz Input Noise Voltage
50 V Input Offset Voltage
Low Power
5 V Supply Operation
9 mA (+V
S
), 35 mA (–V
S
) Quiescent Current
Onboard Resistors
Onboard 10 Attenuator
Dual Polarity Current Outputs
Direct Coupled Differential Signal Path
APPLICATIONS
IF/RF Signal Processing
Received Signal Strength Indicator (RSSI)
High Speed Signal Compression
High Speed Spectrum Analyzer
ECM/Radar
PIN CONFIGURATIONS
20-Lead Plastic DIP (N)
20-Lead Cerdip (Q)
TOP VIEW
(Not to Scale)
20
19
18
17
16
15
14
13
12
11
1
2
3
4
5
6
7
8
9
10
AD641
ATN COM CKT COM
–INPUT
ATN LO
ATN COM
ATN IN
BL1
–V
S
ITC
–OUTPUT
BL2
ATN OUT
+INPUT
RG1
RG0
RG2
LOG OUT
LOG COM
+V
S
+OUTPUT
20-Lead PLCC (P)
3 2 1 20 19
9 10 11 12 13
18
17
16
15
14
4
5
6
7
8
TOP VIEW
(Not to Scale)
PIN 1
IDENTIFIER
ATN COM
CKT COM
AD641
ATN COM
ATN LO
–INPUT
+INPUT
ATN OUT
BL2
SIG –OUT
SIG +OUT
+V
S
LOG COM
ATN IN
BL1
–V
S
ITC
RG1
RG0
RG2
LOG OUT
PRODUCT DESCRIPTION
The AD641 is a 250 MHz, demodulating logarithmic amplifier
with an accuracy of ±2.0 dB and 44 dB dynamic range. The
AD641 uses a successive detection architecture to provide an
output current that is logarithmically proportional to its input
voltage. The output current can be converted to a voltage using
one of several on-chip resistors to select the slope. A single
AD641 provides up to 44 dB of dynamic range at speeds up to
250 MHz, and two cascaded AD641s together can provide
58 dB of dynamic range at speeds up to 250 MHz. The AD641
is fully stable and well characterized over either the industrial or
military temperature ranges.
The AD641 is not a logarithmic building block, but rather a
complete logarithmic solution for compressing and measuring
wide dynamic range signals. The AD641 is comprised of five
stages and each stage has a full wave rectifier, whose current
depends on the absolute value of its input voltage. The output
of these stages are summed together to provide the demodulated
output current scaled at 1 mA per decade (50 µA/dB).
Without utilizing the 10× input attenuator, log conformance of
2.0 dB is maintained over the input range –44 dBm to 0 dBm.
The attenuator offers the most flexibility without significantly
impacting performance.
The 250 MHz bandwidth and temperature stability make this
product ideal for high speed signal power measurement in RF/
IF systems. ECM/Radar and Communication applications are
routinely in the 100 MHz–180 MHz range for power measure-
ment. The bandwidth and accuracy, as well as dynamic range,
make this part ideal for high speed, wide dynamic range signals.
The AD641 is offered in industrial (–40°C to +85°C) and mili-
tary (–55°C to +125°C) package temperature ranges. Industrial
versions are available in plastic DIP and PLCC; MIL versions
are packaged in cerdip.
AD641* PRODUCT PAGE QUICK LINKS
Last Content Update: 02/23/2017
COMPARABLE PARTS
View a parametric search of comparable parts.
DOCUMENTATION
Data Sheet
AD641: 250 MHz Demodulating Logarithmic Amplifier
Data Sheet
AD641: Military Data Sheet
Product Highlight
Industrial Applications
TOOLS AND SIMULATIONS
ADIsimPLL™
ADIsimRF
REFERENCE MATERIALS
Informational
ADI Warns Against Misuse of COTS Integrated Circuits
Product Selection Guide
RF Source Booklet
Space Qualified Parts List
Technical Articles
Design a Logamp RF Pulse Detector
Detecting Fast RF Bursts using Log Amps
Log Amps and Directional Couplers Enable VSWR
Detection
Make Precise Base-Station Power Measurements
Measurement and Control of RF Power, Part I
Measurement and Control of RF Power, Part II
Measurement and Control of RF Power, Part III
Measuring the RF Power in CDMA2000 and W-CDMA High
Power Amplifiers (HPAs)
Measuring VSWR and Gain in Wireless Systems
DESIGN RESOURCES
AD641 Material Declaration
PCN-PDN Information
Quality And Reliability
Symbols and Footprints
DISCUSSIONS
View all AD641 EngineerZone Discussions.
SAMPLE AND BUY
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TECHNICAL SUPPORT
Submit a technical question or find your regional support
number.
DOCUMENT FEEDBACK
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REV. D
–2–
AD641–SPECIFICATIONS
ELECTRICAL CHARACTERISTICS
AD641A AD641S
Parameter Conditions Min Typ Max Min Typ Max Units
TRANSFER FUNCTION
1
(I
OUT
= I
Y
LOG |V
IN
/V
X
|for V
IN
= 0.75 mV to ±200 mV dc)
LOG AMPLIFIER PERFORMANCE
3 dB Bandwidth 250 250 MHz
Voltage Compliance Range –0.3 +V
S
– 1 –0.3 +V
S
– 1 V
Slope Current, I
Y
0.98 1.00 1.02 0.98 1.00 1.02 mA
Accuracy vs. Temperature 0.002 0.002 %/°C
Over Temperature T
MIN
to T
MAX
0.96 1.02 mA
Intercept dBm 250 MHz
41.06 –40.51 –39.96 –41.06 –40.51 –39.96 dBm
Over Temperature T
MIN
to T
MAX
,
250 MHz 41.34 –39.47 dBm
Zero Signal Output Current
2
–0.2 –0.2 mA
ITC Disabled Pin 8 to COM –0.27 –0.27 mA
Maximum Output Current 2.3 2.3 mA
DYNAMIC RANGE
Single Configuration 44 44 dB
Over Temperature T
MIN
to T
MAX
40 38 dB
Dual Configuration 58 58 dB
Over Temperature T
MIN
to T
MAX
52 52 dB
LOG CONFORMANCE f = 250 MHz
Single Configuration –44 dBm to 0 dBm ±0.5 ±2.0 ±0.5 ±2.0 dB
Over Temperature –42 dBm to –4 dBm; T
MIN
to T
MAX
±1.0 ±2.5 dB
–42 dBm to –2 dBm, T
MIN
to T
MAX
±1.0 ±2.5
Dual Configuration S: –60 dBm to –2 dBm; ±0.5 ±2.0 ±0.5 ±2.0 dB
Over Temperature A: –56 dBm to –4 dBm, T
MIN
to T
MAX
±1.0 ±2.5 ±1.0 ±2.5 dB
LIMITER CHARACTERISTICS
Flatness –44 dBm to 0 dBm @ 10.7 MHz ±1.6 ±1.6 dB
Phase Variation –44 dBm to 0 dBm @ 10.7 MHz ±2.0 ±2.0 Degrees
INPUT CHARACTERISTICS
Input Resistance Differential 500 500 k
Input Offset Voltage Differential 50 200 50 200 µV
vs. Temperature 0.8 0.8 µV/°C
Over Temperature T
MIN
to T
MAX
300 µV
vs. Supply 22µV/V
Input Bias Current 7 25 7 25 µA
Input Bias Offset 11µA
Common Mode Input Range –2 +0.3 –2 +0.3 V
SIGNAL INPUT (Pins 1, 20)
Input Capacitance Either Pin to COM 2 2 pF
Noise Spectral Density 1 kHz to 10 MHz 2 2 nV/Hz
Tangential Sensitivity BW = 100 MHz –72 –72 dBm
INPUT ATTENUATOR
(Pins 2, 3, 4, 5 & 19)
Attenuation
3
Pins 5 to Pin 19 20 20 dB
Input Resistance Pins 5 to 3/4 300 300
APPLICATION RESISTORS
(Pins 15, 16, 17) 0.995 1.000 1.005 0.995 1.000 1.005 k
OUTPUT CHARACTERISTICS
(Pins 10, 11)
Peak Differential Output
4
±180 ±180 mV
Output Resistance Either Pin to COM 75 75
Quiescent Output Voltage Either Pin to COM –90 –90 mV
POWER SUPPLY
Voltage Supply Range ±4.5 ±7.5 ±4.5 ±7.5 V
Quiescent Current
+V
S
(Pin 12) T
MIN
to T
MAX
915 9 15 mA
–V
S
(Pin 7) T
MIN
to T
MAX
35 60 35 60 mA
NOTES
1
Logarithms to base 10 are used throughout. The response is independent of the sign of V
IN
.
2
The zero-signal current is a function of temperature unless internal temperature compensation (ITC) pin is grounded.
3
Attenuation ratio trimmed to calibrate intercept to 10 mV when in use. It has a temperature coefficient of +0.3%/°C.
4
The fully limited signal output will appear to be a square wave; its amplitude is proportional to absolute temperature.
Specifications subject to change wi
thout notice.
(V
S
= 5 V; T
A
= +25C, unless otherwise noted)

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Logarithmic Amplifiers IC 250MHZ DEMOD LGAMP
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