True RMS Value
Average Rectified Value
Absolute Value
PROVIDES
200 mV Full-Scale Input Range
(Larger Inputs with Input Attenuator)
Direct Interfacing with 3 1/2 Digit
CMOS A/D Converters
High Input Impedance of 10
12
⍀
Low Input Bias Current: 25 pA max
High Accuracy: ⴞ0.2 mV ⴞ0.3% of Reading
RMS Conversion with Signal Crest Factors Up to 5
Wide Power Supply Range: +2.8 V, –3.2 V to ⴞ16.5 V
Low Power: 160 A max Supply Current
No External Trims Needed for Specified Accuracy
AD736—A General Purpose, Buffered Voltage
Output Version Also Available
PRODUCT DESCRIPTION
The AD737 is a low power, precision, monolithic true rms-to-dc
converter. It is laser trimmed to provide a maximum error of
±0.2 mV ±0.3% of reading with sine-wave inputs. Furthermore,
it maintains high accuracy while measuring a wide range of
input waveforms, including variable duty cycle pulses and triac
(phase) controlled sine waves. The low cost and small physical
size of this converter make it suitable for upgrading the performance of non-rms “precision rectifiers” in many applications.
Compared to these circuits, the AD737 offers higher accuracy at
equal or lower cost.
The AD737 can compute the rms value of both ac and dc input
voltages. It can also be operated ac coupled by adding one external capacitor. In this mode, the AD737 can resolve input sig-
nal levels of 100 µV rms or less, despite variations in temperature
or supply voltage. High accuracy is also maintained for input
waveforms with crest factors of 1 to 3. In addition, crest factors
The AD737 allows the choice of two signal input terminals: a
high impedance (10
with high Z input attenuators and a low impedance (8 kΩ) input
which allows the measurement of 300 mV input levels, while
operating from the minimum power supply voltage of +2.8 V,
–3.2 V. The two inputs may be used either singly or differentially.
The AD737 achieves a 1% of reading error bandwidth exceeding 10 kHz for input amplitudes from 20 mV rms to 200 mV
rms while consuming only 0.72 mW.
The AD737 is available in four performance grades. The
AD737J and AD737K grades are rated over the commercial
temperature range of 0°C to +70°C. The AD737A and AD737B
grades are rated over the industrial temperature range of –40°C
to +85°C.
The AD737 is available in three low-cost, 8-lead packages: plastic DIP, plastic SO and hermetic cerdip.
as high as 5 can be measured (while introducing only 2.5%
additional error) at the 200 mV full-scale input level.
The AD737 has no output buffer amplifier, thereby significantly
reducing dc offset errors occuring at the output. This allows the
device to be highly compatible with high input impedance A/D
converters.
Requiring only 160 µA of power supply current, the AD737 is
optimized for use in portable multimeters and other battery
powered applications. This converter also provides a “power
PRODUCT HIGHLIGHTS
1. The AD737 is capable of computing the average rectified
value, absolute value or true rms value of various input
signals.
2. Only one external component, an averaging capacitor, is
required for the AD737 to perform true rms measurement.
3. The low power consumption of 0.72 mW makes the AD737
suitable for many battery powered applications.
down” feature which reduces the power supply standby current
to less than 30 µA.
*Protected under U.S. Patent Number 5,495,245.
REV. C
Information furnished by Analog Devices is believed to be accurate and
reliable. However, no responsibility is assumed by Analog Devices for its
use, nor for any infringements of patents or other rights of third parties
which may result from its use. No license is granted by implication or
otherwise under any patent or patent rights of Analog Devices.
Operating Voltage Range+2.8, –3.2 ±5±16.5+2.8, –3.2 ±5±16.5V
Quiescent CurrentZero Signal120160120160µA
V
= 200 mV rms, No LoadSine-Wave Input170210170210µA
IN
Power Down Mode CurrentPin 3 Tied to +V
S
25402540µA
TEMPERATURE RANGE
Operating, Rated Performance
Commercial (0°C to +70°C)AD737JAD737K
Industrial (–40°C to +85°C)AD737AAD737B
NOTES
l
Accuracy is specified with the AD737 connected as shown in Figure 16 with capacitor CC.
2
Nonlinearity is defined as the maximum deviation (in percent error) from a straight line connecting the readings at 0 and 200 mV rms.
3
Error vs. Crest Factor is specified as additional error for a 200 mV rms signal. C.F. = V
4
DC offset does not limit ac resolution.
Specifications are subject to change without notice.
Specifications shown in boldface are tested on all production units at final electrical test. Results from those tests are used to calculate outgoing quality levels.
Stresses above those listed under Absolute Maximum Ratings may cause perma-
ModelRangeDescriptionOption
AD737AQ–40°C to +85°C CerdipQ-8
AD737BQ–40°C to +85°C CerdipQ-8
AD737JN0°C to +70°CPlastic DIPN-8
AD737JR0°C to +70°CSOICSO-8
AD737JR-REEL0°C to +70°C13" Tape and Reel SO-8
AD737JR-REEL7 0°C to +70°C7" Tape and ReelSO-8
AD737KN0°C to +70°CPlastic DIPN-8
AD737KR0°C to +70°CSOICSO-8
AD737KR-REEL 0°C to +70°C13" Tape and Reel SO-8
AD737KR-REEL7 0°C to +70°C7" Tape and ReelSO-8
ORDERING GUIDE
TemperaturePackagePackage
nent damage to the device. This is a stress rating only; functional operation of the
device at these or any other conditions above those indicated in the operational
section of this specification is not implied. Exposure to absolute maximum rating
conditions for extended periods may affect device reliability.