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ADI AD633ARZRoHS

Manufacturer
MPN
AD633ARZ
LCSC Part #
C431243
Packaging
SOIC-8
Customer #
Key Attributes
Analog Multiplier
Datasheetpdf iconADI AD633ARZ
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QtyUnit Price(Reference Only)Total Amount
1+$ 21.4266$ 21.43
10+$ 20.4909$ 204.91
30+$ 18.8723$ 566.17
98+$ 17.4598$ 1711.06
Standard Packaging98/Full Tube
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Products Specifications

All
TypeDescription
CategoryIntegrated Circuits (ICs)/Linear/Analog Multipliers, Dividers
ManufacturerADI
PackagingSOIC-8
Slew Rate20V/us
FeaturesBuilt-in reference voltage;Balanced modulation/demodulation module;Built-in voltage division and reciprocal operation
Vcm - Common Mode Voltage-10V~10V
Operating Temperature-40℃~+85℃
QuadrantFour-Quadrant
Common Mode Rejection Ratio (CMRR)80dB
Bandwidth1MHz

Introduction

AI Translation

The AD633 is a functionally complete, four - quadrant, analog multiplier. It includes high impedance, differential X and Y inputs, and a high impedance summing input (Z). The low impedance output voltage is a nominal 10V full scale provided by a buried Zener. The AD633 is the first product to offer these features in modestly priced 8 - lead PDIP and SOIC packages. The AD633 is laser calibrated to a guaranteed total accuracy of 2% of full scale. Nonlinearity for the Y input is typically less than 0.1% and noise referred to the output is typically less than 100μV rms in a 10Hz to 10kHz bandwidth. A 1MHz bandwidth, 20V / μs slew rate, and the ability to drive capacitive loads make the AD633 useful in a wide variety of applications where simplicity and cost are key concerns. The versatility of the AD633 is not compromised by its simplicity. The Z input provides access to the output buffer amplifier, enabling the user to sum the outputs of two or more multipliers, increase the multiplier gain, convert the output voltage to a current, and configure a variety of applications.

Features

AI Translation
  • 4 - quadrant multiplication
  • Low cost, 8 - lead SOIC and PDIP packages
  • Complete - no external components required
  • Laser - trimmed accuracy and stability
  • Total error within 2% of full scale
  • Differential high impedance X and Y inputs
  • High impedance unity - gain summing input
  • Laser - trimmed 10 V scaling reference

Applications

AI Translation
  • Multiplication, division, squaring
  • Modulation/demodulation, phase detection
  • Voltage - controlled amplifiers/attenuators/filters