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ADI AD834ARZRoHS

Manufacturer
MPN
AD834ARZ
LCSC Part #
C578705
Packaging
SOIC-8
Customer #
Key Attributes
500 MHz Four-Quadrant Multiplier
Datasheetpdf iconADI AD834ARZ

Products Specifications

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TypeDescription
CategoryIntegrated Circuits (ICs)/Linear/Analog Multipliers, Dividers
ManufacturerADI
PackagingSOIC-8
FeaturesMulti-channel arithmetic structure;Built-in voltage division and reciprocal operation
Operating Temperature-40℃~+85℃
QuadrantFour-Quadrant
Common Mode Rejection Ratio (CMRR)70dB
Input Offset Current Drift (Ios TC)40nA/℃
Bandwidth500MHz

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging98
Sales UnitPiece

Introduction

AI Translation

The AD834 is a monolithic, laser - trimmed four - quadrant analog multiplier intended for use in high frequency applications, with a transconductance bandwidth (R_L = 50Ω) in excess of 500 MHz from either of the differential voltage inputs. In multiplier modes, the typical total full - scale error is 0.5% dependent on the application mode and the external circuitry. Performance is relatively insensitive to temperature and supply variations due to the use of stable biasing based on a band gap reference generator and other design features. To preserve the full bandwidth potential of the high speed bipolar process used to fabricate the AD834, the outputs appear as a differential pair of currents at open collectors. To provide a single - ended ground referenced voltage output, some form of external current - to - voltage conversion is needed. This may take the form of a wideband transformer, balun, or active circuitry such as an op amp. In some applications (such as power measurement), the subsequent signal processing may not need to have high bandwidth. The transfer function is accurately trimmed such that when X = Y = ±1 V, the differential output is ±4 mA. This absolute calibration allows the outputs of two or more AD834 devices to be summed with precisely equal weighting, independent of the accuracy of the load circuit.

Features

AI Translation
  • DC to >500 MHz operation
  • Differential ±1 V full - scale inputs
  • Differential ±4 mA full - scale output current
  • Low distortion (< 0.05%) for 0 dBm input
  • Supply voltages from ±4 V to ±9V
  • Low power 280 mW typical at V_5 = ±5V

Applications

AI Translation
  • High speed real time computation
  • Wideband modulation and gain control
  • Signal correlation and RF power measurement
  • Voltage controlled filters and oscillators
  • Linear keyers for high resolution television
  • Wideband true RMS
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