MPY634AM BURR-BROWN [Burr-Brown Corporation], MPY634AM Datasheet
MPY634AM
Related parts for MPY634AM
MPY634AM Summary of contents
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Wide Bandwidth PRECISION ANALOG MULTIPLIER FEATURES WIDE BANDWIDTH: 10MHz typ 0.5% MAX FOUR-QUADRANT ACCURACY INTERNAL WIDE-BANDWIDTH OP AMP EASY TO USE LOW COST APPLICATIONS PRECISION ANALOG SIGNAL PROCESSING MODULATION AND DEMODULATION VOLTAGE-CONTROLLED AMPLIFIERS VIDEO SIGNAL PROCESSING VOLTAGE-CONTROLLED FILTERS AND ...
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... Transfer Function (X > (1) Total Error untrimmed (X = 10V, –10V Z +10V 1V, –1V Z +1V) (0.1V X 10V, –10V Z 10V) SQUARE PERFORMANCE Transfer Function Total Error (–10V X 10V) ® MPY634 MPY634AM TYP MAX MIN TYP MAX MIN (X – – 10V 2.0 1.0 2.5 1.5 0.03 ...
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... Y and Temperature Range: Operating –25 C/+85 C Storage –65 C/+150 C –40 C/+85 C Lead Temperature (soldering, 10s) +300 C SOIC ‘KU’ Package +260 C * Specification same as for MPY634AM/BM. PACKAGE INFORMATION MODEL PACKAGE MPY634KP 14-Pin PDIP MPY634KU 16-Pin SOIC MPY634AM TO-100 MPY634BM TO-100 MPY634SM TO-100 NOTE: (1) For detailed drawing and dimension table, please see end of data sheet, or Appendix D of Burr-Brown IC Data Book ...
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TYPICAL PERFORMANCE CURVES 15VDC, unless otherwise noted FEEDTHROUGH vs FREQUENCY –20 –40 X Feedthrough –60 Y Feedthrough –80 –100 100 1k 10k 100k Frequency (Hz) COMMON-MODE REJECTION RATIO vs FREQUENCY 90 80 ...
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TYPICAL PERFORMANCE CURVES 15VDC, unless otherwise noted INPUT/OUTPUT SIGNAL RANGE vs SUPPLY VOLTAGES 14 12 Output All inputs 10V ...
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5. – SF Internal device tolerances make this relationship accurate to within approximately 25%. Some applications can benefit from reduction of the SF by this technique. The reduced input bias current, noise, and drift achieved ...
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Feedback is applied to the Y normally referenced to output ground. Alternatively, as the transfer function implies, an input applied to Y summed directly into V . Since the feedback connection OUT is made to a multiplying input, the ...
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Out 2 4.7k 18k MPY634 10k 4. Input +10V Y – –15V With a linearly changing 0-10V input, this circuit’s output follows ...