AD736JN

Analog Devices Inc. AD736JN

Part Number:
AD736JN
Manufacturer:
Analog Devices Inc.
Ventron No:
3267383-AD736JN
Description:
IC TRUE RMS/DC CONV LP 8-DIP
ECAD Model:
Datasheet:
AD736JN

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Specifications
Analog Devices Inc. AD736JN technical specifications, attributes, parameters and parts with similar specifications to Analog Devices Inc. AD736JN.
  • Mounting Type
    Through Hole
  • Package / Case
    8-DIP (0.300, 7.62mm)
  • Supplier Device Package
    8-PDIP
  • Packaging
    Tube
  • Part Status
    Obsolete
  • Moisture Sensitivity Level (MSL)
    3 (168 Hours)
  • Voltage - Supply
    2.8V -3.2V~±16.5V
  • Current - Supply
    160μA
  • RoHS Status
    Non-RoHS Compliant
Description
AD736JN Overview
Through Hole is the mounting type of the device.RMS to DC converter should operate wRMS to DC converterh the voltage supply of 2.8V -3.2V~±16.5V.The product has been packaged according to Tube.For packaging, 8-DIP (0.300, 7.62mm) units are used.At the present time, there is a supply of 160μA.There is a supplier device bundle of 8-PDIP available for this device.

AD736JN Features
Supply voltage of 2.8V -3.2V~±16.5V

AD736JN Applications
There are a lot of Rochester Electronics, LLC AD736JN applications of RMS to DC converters.

Battery-Powered Instruments
Panel Meters
True RMS Digital Multimeters and Panel Meters
Digital Multimeters
Process Control
True RMS AC DC Measurements
AD736JN More Descriptions
Low Cost, Low Power, True RMS-to-DC Converter | IC TRUE RMS/DC CONV LP 8-DIP
Non-RoHS Compliant Obsolete Through Hole Tube RMS to DC Converter 160muA 2.8V -3.2V~卤16.5V
The AD736 is a low power, precision, monolithic true rms-to-dc converter. It is laser trimmed to provide a maximum error of ±0.3 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 size of this converter make it suitable for upgrading the performance of non-rms precision rectifiers in many applications. Compared to these circuits, the AD736 offers higher accuracy at an equal or lower cost. The AD736 can compute the rms value of both ac and dc input voltages. It can also be operated as an ac-coupled device by adding one external capacitor. In this mode, the AD736 can resolve input signal 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 as high as 5 can be measured (introducing only 2.5% additional error) at the 200 mV full-scale input level. The AD736 has its own output buffer amplifier, thereby pro-viding a great deal of design flexibility. Requiring only 200 μA of power supply current, the AD736 is optimized for use in portable multimeters and other battery-powered applications. The AD736 allows the choice of two signal input terminals: a high impedance FET input (1012 Ω) that directly interfaces with High-Z input attenuators and a low impedance input (8 kΩ) that 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 can be used either single ended or differentially. The AD736 has a 1% reading error bandwidth that exceeds 10 kHz for the input amplitudes from 20 mV rms to 200 mV rms while consuming only 1 mW. The AD736 is available in four performance grades. The AD736J and AD736K grades are rated over the 0°C to 70°C and −20°C to 85°C commercial temperature ranges. The AD736A and AD736B grades are rated over the −40°C to 85°C industrial temperature range. The AD736 is available in three low cost, 8-lead packages: PDIP, SOIC, and CERDIP. Product Highlights The AD736 is capable of computing the average rectified value, absolute value, or true rms value of various input signals. Only one external component, an averaging capacitor, is required for the AD736 to perform true rms measurement. The low power consumption of 1 mW makes the AD736 suitable for many battery-powered applications. A high input impedance of 1012 Ω eliminates the need for an external buffer when interfacing with input attenuators. A low impedance input is available for those applications that require an input signal up to 300 mV rms operating from low power supply voltages. Data Sheet, Rev. H, 2/07
Certification
  • ISO 9001
  • ISO 13485
  • ISO 45001
  • ASA
  • ESD
  • DUNS
  • SMTA
  • ROHS

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