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SP9316

Sipex
Part Number SP9316
Manufacturer Sipex
Description 16Bit CMOS Multiplying DAC
Published Jun 7, 2005
Detailed Description SP9316 Corporation SIGNAL PROCESSING EXCELLENCE 16–Bit CMOS Multiplying DAC s s s s s s High Stability with No Laser–T...
Datasheet PDF File SP9316 PDF File

SP9316
SP9316


Overview
SP9316 Corporation SIGNAL PROCESSING EXCELLENCE 16–Bit CMOS Multiplying DAC s s s s s s High Stability with No Laser–Trimming 15–Bit Monotonicity over Temperature Single Power Supply Operation Upper/Lower Byte Input Registers 2– and 4–Quadrant Multiplication 60mW Power Dissipation DESCRIPTION… The SP9316 is a 16–bit, monolithic CMOS, multiplying digital-to-analog converter with two 8–bit input registers for direct microprocessor interface.
It offers two– and four–quadrant multiplying capability with TTL/DTL and CMOS logic compatibility.
Operating from a single +15V supply, power dissipation is less than 60mW.
The SP9316 is packaged in 24-pin ceramic or molded plastic.
Models are available for operation over the commercial (0°C to 70°C) and military (–55°C to +125°C) temperature ranges.
For product screened to MIL–STD–883, please consult the factory.
BIT: 9 10 11 12 13 14 15 16 4 LSB LATCH CONTROL REFERENCE INPUT MSB LATCH CONTROL 19 13 20 5 BIT: 8 3 2 1 24 23 22 21 ANA GND 18 +15V 17 SP9316 15 16 14 5KΩ IOUT2 IOUT1 FEEDBACK INPUT REGISTER PRECISION 16-BIT RESISTOR NETWORK & SWICHES INPUT REGISTER 6 7 7 6 8 5 9 4 10 11 12 3 2 1(MSB) Corporation 181 SIGNAL PROCESSING EXCELLENCE ABSOLUTE MAXIMUM RATINGS (TA=25°C unless otherwise noted) These are stress ratings only and functional operation of the device at these or any other above those indicated in the operation sections of the specifications below is not implied.
Exposure to absolute maximum rating conditions for extended periods of time may affect reliability.
VDD to GND -–0.
3V, +17V Digital Input Voltage to GND .
-–0.
3V ,VDD +0.
3V VREF or VRFB to GND .
.
.
.
±25V Output Voltage (Pin 15, Pin 16) .
.
–0.
3V, VDD +0.
3V Power Dissipation (Any Package) to +75°C .
.
.
.
450mW Derates above 75°C by .
.
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