Datasheet AD538 (Analog Devices) - 8

ManufacturerAnalog Devices
DescriptionReal-Time Analog Computational Unit (ACU)
Pages / Page16 / 8 — AD538. 150. FOR THE FREQUENCY RANGE OF 10Hz. X = 10V. TO 100kHz THE TOTAL …
RevisionE
File Format / SizePDF / 352 Kb
Document LanguageEnglish

AD538. 150. FOR THE FREQUENCY RANGE OF 10Hz. X = 10V. TO 100kHz THE TOTAL rms OUTPUT. Y = 5V +5V SIN ωt VOLTS. NOISE, e. Z = 0V

AD538 150 FOR THE FREQUENCY RANGE OF 10Hz X = 10V TO 100kHz THE TOTAL rms OUTPUT Y = 5V +5V SIN ωt VOLTS NOISE, e Z = 0V

Model Line for this Datasheet

Text Version of Document

AD538 150 5 V FOR THE FREQUENCY RANGE OF 10Hz X = 10V V TO 100kHz THE TOTAL rms OUTPUT Y = 5V +5V SIN ωt VOLTS V NOISE, e Z = 0V o, FOR A GIVEN BANDWIDTH 100 ) 4 Bw, IS CALCULATED eo = en Bw. Hz / V ) – µ 3 -p e n V 10 ( X = 0.01V V p E (m OIS OV N 2 GE 1 V OLTA X = 10V V 1 0.1 0 100 1k 10k 100k 1M
009
0.01 0.1 1 10
010
INPUT FREQUENCY (Hz) DC OUTPUT VOLTAGE (V)
00959- 00959- Figure 9. VY Feedthrough vs. Frequency Figure 10. 1 kHz Output Noise Spectral Density vs. DC Output Voltage Rev. E | Page 8 of 16 Document Outline Features Applications Functional Block Diagram General Description Revision History Specifications Absolute Maximum Ratings ESD Caution Pin Configuration and Function Descriptions Typical Performance Characteristics Theory of Operation Re-Examination of Multiplier/Divider Accuracy Functional Description Stability Precautions Using The Voltage References One-Quadrant Multiplication/Division Two-Quadrant Division Log Ratio Operation Analog Computation Of Powers And Roots Square Root Operation Applications Information Transducer Linearization ARC-Tangent Approximation Outline Dimensions Ordering Guide
EMS supplier