MPY100
MPY100 is MULTIPLIER-DIVIDER manufactured by Burr-Brown.
- Part of the MPY100_Burr comparator family.
- Part of the MPY100_Burr comparator family.
FEATURES q LOW COST q DIFFERENTIAL INPUT q ACCURACY 100% TESTED AND GUARANTEED q NO EXTERNAL TRIMMING REQUIRED q LOW NOISE: 90µVrms, 10Hz to 10k Hz q HIGHLY RELIABLE ONE-CHIP DESIGN q DIP OR TO-100 TYPE PACKAGE q WIDE TEMPERATURE OPERATION
APPLICATIONS q MULTIPLICATION q DIVISION q q q q q q SQUARING SQUARE ROOT LINEARIZATION POWER PUTATION ANALOG SIGNAL PROCESSING ALGEBRAIC PUTATION q TRUE RMS-TO-DC CONVERSION
DESCRIPTION
The MPY100 multiplier-divider is a low cost precision device designed for general purpose application. In addition to four-quadrant multiplication, it also performs analog square root and division without the bother of external amplifiers or potentiometers. Lasertrimmed one-chip design offers the most in highly reliable operation with guaranteed accuracies. Because of the internal reference and pretrimmed accuracies the MPY100 does not have the restrictions of other low cost multipliers. It is available in both TO-100 and DIP ceramic packages.
X1 V-I X2 Multiplier Core Y1 V-I Y2 A Out
Z1 V-I Z2 Attenuator
High Gain Output Amplifier
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International Airport Industrial Park
- Mailing Address: PO Box 11400 Tel: (520) 746-1111
- Twx: 910-952-1111
- Cable: BBRCORP
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- Tucson, AZ 85734
- Street Address: 6730 S. Tucson Blvd.
- Tucson, AZ 85706 Telex: 066-6491
- FAX: (520) 889-1510
- Immediate Product Info: (800) 548-6132
1987 Burr-Brown Corporation
PDS-412D
Printed in U.S.A. March, 1995
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SPECIFICATIONS
At TA = +25°C and ±VS = 15VDC, unless otherwise specified. MPY100A PARAMETER CONDITIONS MIN TYP MAX MIN MPY100B/C TYP
- /- MAX MIN MPY100S TYP
- MAX UNITS
MULTIPLIER PERFORMANCE Transfer Function Total Error Initial vs Temperature vs Temperature vs Supply(1) Individual Errors Output Offset Initial vs Temperature vs Temperature vs Supply(1) Scale Factor Error Initial vs Temperature vs Temperature vs Supply(1) Nonlinearity X Input Y Input Feedthrough X Input Y Input vs Temperature vs Temperature vs Supply(1)
- 10V ≤ X, Y ≤ 10V TA = +25°C
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