AD7118 Analog Devices, AD7118 Datasheet

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AD7118

Manufacturer Part Number
AD7118
Description
LOGDAC CMOS Logarithmic D/A Converter
Manufacturer
Analog Devices
Datasheet

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a
GENERAL DESCRIPTION
The LOGDAC
verter which attenuates an analog input signal over the range
0 to –85.5 dB in 1.5 dB steps. The analog output is determined
by a six-bit attenuation code applied to the digital inputs.
Operating frequency range of the device is from dc to several
hundred kHz.
The device is manufactured using an advanced monolithic
silicon gate thin-film on CMOS process and is packaged in a
14-pin dual-in-line package.
Model
AD7118KN
AD7118LN
AD7118BQ
AD7118CQ
AD7118TQ
AD7118UQ
NOTES
1
2
*Protected by U.S. Patent No. 4521,764.
REV. A
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.
N = Plastic DIP; Q = Cerdip.
To order MIL-STD-883, Class B processed parts, add /883B to part number.
LOGDAC is a registered trademark of Analog Devices, Inc.
FEATURES
Dynamic Range 85.5 dB
Resolution 1.5 dB
Full
Full Military Temperature Range –55 C to +125 C
Low Distortion
Low Power Consumption
Latch Proof Operation (Schottky Diodes Not Required)
Single 5 V to 15 V Supply
APPLICATIONS
Digitally Controlled AGC Systems
Audio Attenuators
Wide Dynamic Range A/D Converters
Sonar Systems
Function Generators
25 V Input Range Multiplying DAC
2
2
®
ORDERING INFORMATION
Temperature
Range
0 C to +70 C
0 C to +70 C
–25 C to +85 C
–25 C to +85 C
–55 C to +125 C
–55 C to +125 C
AD7118 is a CMOS multiplying D/A con-
Specified
Accuracy
Range
0 to 42 dB
0 to 48 dB
0 to 42 dB
0 to 48 dB
0 to 42 dB
0 to 48 dB
Package
Option
N-16
N-16
Q-16
Q-16
Q-16
Q-16
1
CMOS Logarithmic D/A Converter
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 617/329-4700
FUNCTIONAL DIAGRAM
PIN CONFIGURATION
AD7118*
Fax: 617/326-8703
LOGDAC

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AD7118 Summary of contents

Page 1

... Function Generators GENERAL DESCRIPTION ® The LOGDAC AD7118 is a CMOS multiplying D/A con- verter which attenuates an analog input signal over the range 0 to –85 1.5 dB steps. The analog output is determined by a six-bit attenuation code applied to the digital inputs. Operating frequency range of the device is from dc to several hundred kHz ...

Page 2

... AD7118–SPECIFICATIONS Parameter NOMINAL RESOLUTION ACCURACY RELATIVE AD7118L/C –30 dB –31 –42 dB –43 –48 dB AD7118K/B –30 dB –31 –42 dB MONOTONIC RANGE Nominal 1.5 dB Steps L/C/U Grade K/B/T Grade Nominal 3 dB Steps All Grades V INPUT RESISTANCE All Grades IN (PIN 12) L/C/U Grade K/B/T Grade ...

Page 3

... ESD (electrostatic discharge) sensitive device. Electrostatic charges as high as 4000 V readily accumulate on the human body and test equipment and can discharge without detection. Although the AD7118 features proprietary ESD protection circuitry, permanent damage may occur on devices subjected to high energy electrostatic discharges. Therefore, proper ESD precautions are recommended to avoid performance degradation or loss of functionality ...

Page 4

... AD7118 CIRCUIT DESCRIPTION GENERAL CIRCUIT INFORMATION The AD7118 consists of a 17-bit R-2R CMOS multiplying D/A converter with extensive digital input logic. The logic translates the 6-bit binary input into a 17-bit word which is used to drive the D/A converter. Table I gives the nominal output voltages (and levels relative for all possible input codes. ...

Page 5

... Feedthrough and absolute accuracy for attenuation levels be- yond 42 dB are sensitive to output leakage current effects. For this reason it is recommended that the operating temperature of the AD7118 be kept as close practically possible, particularly where the device’s performance at high attenuation levels is important. A typical plot of leakage current vs. tempera- ture is shown in Figure 10 ...

Page 6

... AD7118 –Typical Performance Characteristics Figure 7. Digital Threshold & Power Supply Current vs. Power Supply Figure 8. DC Attenuation Error vs. Attenuation & V Figure 9. DC Attenuation Error vs. Attenuation & Temperature Figure 10. Output Leakage Current as Temperature and 15 Volts DD Figure 11. Frequency Response with AD544 and ...

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