PRODUCT OVERVIEW REF. IN 16 BIPOLAR OFFSET 17 REGISTER 74LS75 REGISTER 74LS75 BITS LSB

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1 FEATURES -Bit resolution Integral nonlinearity error ±/LSB, max. Differential nonlinearity error ±/LSB, max. MIL-STD- high-reliability versions available Input register μs fast output settling time Guaranteed monotonicity over full temperature range INPUT/OUTPUT CONNECTIONS PIN FUNCTION PIN FUNCTION BIT (MSB) REFERENCE OUT BIT GAIN BIT +V SUPPLY BIT GROUND BIT 0 SUMMING JUNCTION 6 BIT 6 /Register Enable 7 BIT 7 0V RANGE BIT 7 BIPOLAR OFFSET BIT 6 REFERENCE IN 0 BIT 0 VOLTAGE OUTPUT BIT V SUPPLY BIT (LSB) +V SUPPLY PRODUCT OVERVIEW The DAC- Series D/A converters are high performance -bit devices with a fast settling voltage output. They are compatible and pin-pin replacement for the standard DAC and 60 series. They incorporate a level-controlled input storage register and are specifi cally designed for systems applications such as data bus interfacing with computers. When the load/register Enable input is high, data in the storage register is held, and when the load input is low, data is transferred through to the DAC. There are two basic models available by coding option: binary and two s complement. The output voltage ranges are externally pin programmable and include 0 to +0V, ±V, and ±0V. The DAC- Series contains a precision zener reference circuit. This eliminates codedependent ground currents by routing current from the positive supply to the internal ground node as determined by the R-R ladder network. The internal feedback resistors for the on-board amplifi er track the ladder network resistors, enhancing temperature performance. The excellent tracking of the resistors results in a differential nonlinearity tempco of ±ppm/ C maximum. The temperature coeffi cient of gain is ±0ppm/ C maximum, and the tempco of zero is ±ppm/ C maximum. BLOCK DIAGRAM REF. OUT GAIN REF. IN 6 BIPOLAR OFFSET 7 +V V +V SUPPLY SUPPLY SUPPLY +V D/A CONVERTER 0V RANGE 0 SUMMING JUNCTION 7LS7 7LS7 7LS7 VOLTAGE OUTPUT GROUND BITS MSB DIGITAL INPUTS LSB Figure. DAC- Functional Block Diagram DATEL, Inc. Cabot Boulevard, Mansfield, MA 00- USA Tel: (0) help@datel.com MDA_DAC-.A0 Page of 6

2 FUNCTIONAL SPECIFICATIONS (Typical at + C and ±V and +V supplies unless otherwise noted.) DESCRIPTION INPUTS Resolution bits Coding, Unipolar Output Straight binary Coding, Bipolar Output Offset binary, two s complement ➀ Input Logic Level, Bit ON ("") +.0V to +.V Input Logic Level, Bit OFF ("0") 0V to +0.V Logic Loading LSTTL load Load Input ➁ High ( ) = hold data Low ( 0 ) = transfer data Load Input Loading LSTTL loads PERFORMANCE ➃ Nonlinearity Error, max. ±/LSB Differential Nonlinearity Error, max. ±/LSB Gain Error, Before Trimming ±0.% ➂ Zero Error, Before Trimming ±0.% of FSR ➂ Gain Tempco, max. ±0ppm/ C Zero Tempco, Unipolar, max. ±ppm/ C of FSR Offset Tempco, Bipolar, max. ±0ppm/ C of FSR Diff. Nonlinearity Tempco, max. ±ppm/ C of FSR Monotonicity Guaranteed over temperature Settling Time, 0V Change μs Settling Time, 0V Change μs Settling Time, LSB Change 00ns Slew Rate ±0V/μs Power Supply Rejection ±0.00%FSR/% OUTPUTS Output Voltage Ranges, Unipolar ➄ 0 to +0V Output Voltage Ranges, Bipolar ➄ ±V ±0V Output Current ±ma min. Output Impedance 0.0Ω POWER REQUIREMENTS +V, ±0.V at 0mA Power Supply Voltages ➅ V, ±0.V at 0mA +V, ±0.V at 0mA PHYSICAL/ENVIRONMENTAL 0 C to +70 C ( MC,MC-C) Operating Temperature Range, Case -0 C to +00 C (ME,ME-C) C to + C (MM, MM-C,,-C/) Storage Temperature Range 6 C to + C Package Type -pin DDIP Weight 0. ounces (6. grams) Footnotes: ➀ For two s complement coding, order the "-" model as described in Ordering Information. ➁ Logic levels are the same as for data inputs. ➂ Initial errors are trimmable to zero. See Connection Diagram. ➃ FSR is full scale range and is 0V for 0 to +0V output range, 0V for ±0V output range, etc. ➄ By external pin connection. ➅ For ±V, +V operation, contact factory. ABSOLUTE MAXIMUM RATINGS PARAMETERS LIMITS UNITS Positive Supply, Pin + Volts Negative Supply, Pin Volts Logic Supply, Pin +. Volts Digital Input Voltage, Pins & +. Volts Output Current, Pin ±0 ma Lead Temperature (soldering, 0s) 00 C TECHNICAL NOTES. It is recommended that these converters be operated with local supply bypass capacitors of (tantalum type) at the +V, V and +V supply pins. The capacitors should be connected as close to the pins as possible. In high RFI noise environments, these capacitors should be shunted with 0.0 ceramic capacitors.. The analog, digital and power grounds should be separated from each other as close as possible to pin where they all must come together.. The load control pin is a level-triggered input which causes the register to hold data with a high input and transfer data to the DAC with a low input.. A setup time of 0ns minimum must be allowed for the input data. The DAC output voltage begins to change when the register output changes. CALIBRATION PROCEDURE Select the desired output voltage range and connect the converter as shown in the Output Range Selection Table and the Connection Diagrams. Refer to the Coding Tables. Unipolar Operation. Offset Adjustment. Set the input digital code to and adjust the Offset ADJ. potentiometer to give V output.. Gain Adjustment. Set the input digital code to (straight binary) and adjust the GAIN ADJ. potentiometer to give the full-scale output voltage shown in Table. Bipolar Operation. Offset Adjustment. Set the digital input code to (offset binary) or 0 (two s complement) and adjust the OFFSET ADJ. potentiometer to give the negative full-scale output voltage shown in Table.. Gain Adjustment. Set the digital input code to (offset binary) or two s complement) and adjust the GAIN ADJ. potentiometer to give the positive full-scale output voltage shown in Table. DATEL, Inc. Cabot Boulevard, Mansfield, MA 00- USA Tel: (0) help@datel.com MDA_DAC-.A0 Page of 6

3 Hold 0 SUMMING JUNCTION DATA IN OUTPUT TO DAC Transfer 0 t SETUP 0nsec min. t SETUP 0nsec min. FULL SCALE I OUT = ma I OUT 6. 0V RANGE VOLTAGE OUTPUT 6 REFERENCE IN 7 BIPOLAR OFFSET t PHL 60nsec ALL RISE AND FALL TIMES 0nsec t PLH 60nsec 6.V REF. REFERENCE OUT GROUND Figure. DAC- Timing Figure. Output Circuit CONNECTION DIAGRAMS BIT LSB 0 DATA 7 IN 6 MSB k OFFSET +V V OUT (O TO +0V) 00k GAIN +V BIT LSB 0 DATA 7 IN 6 MSB k OFFSET +V V OUT ( TO +V) 00k GAIN +V Figure. Unipolar Operation (0 to +0V) Figure. Bipolar Operation (±V) APPLICATIONS 0 0 N N 0 0 LSB's MSB's N N LSB's MSB's LSB's MSB's 0 N 0 N ADDRESS DECODER ADDRESS STROBE DATA BUS BITS ADDRESS DECODER ADDRESS A N A HI BYTE TEMPORARY STORAGE LO BYTE BIT DATA BUS A 0 WRITE STROBE Figure 6. Interfacing to -Bit Data Bus Figure 7. Interfacing to -Bit Data Bus DATEL, Inc. Cabot Boulevard, Mansfield, MA 00- USA Tel: (0) help@datel.com MDA_DAC-.A0 Page of 6

4 CODING TABLES DAC- Series COMPLEMENTARY STRAIGHT BINARY OUTPUT RANGES MSB LSB 0 to +0V Table. Unipolar Operation COMPLEMENTARY OFFSET BINARY TWO S COMPLEMENT OUTPUT RANGES MSB LSB MSB LSB ±0V ±V Table. Bipolar Operation RANGE CONNECT THESE PINS TOGETHER ±0V 6 & 7 & 0 ±V 6 & 7 & 0 & +0V 6 & 7 & & Table. Output Range Selection DATEL, Inc. Cabot Boulevard, Mansfield, MA 00- USA Tel: (0) help@datel.com MDA_DAC-.A0 Page of 6

5 MECHANICAL DIMENSIONS DDIP PACKAGE. MAX. (.7) DAC- Series 0.0 MAX. (0.) Dimension Tolerances (unless otherwise indicated): place decimal (.XX) ±0.00 (±0.) place decimal (.XXX) ±0.00 (±0.7) Lead Material: Kovar alloy Lead Finish: 0 microinches (minimum) gold plating over 00 microinches (nominal) nickel plating 0. MAX. (.6).00 (7.0) 0.00 TYP MAX. (.00) (0.) 0.0 MAX. (.6) 0.0 ±0.00 (0.7) (.06) SEATING PLANE 0.0 (0.6) ±0.00 (.0) 0.00 MECHANICAL DIMENSIONS SMT GULL-WING PACKAGE. MAX. (.0) 0.0 MAX. (0.) Dimension Tolerances (unless otherwise indicated): place decimal (.XX) ±0.00 (±0.) place decimal (.XXX) ±0.00 (±0.7) Lead Material: Kovar alloy Lead Finish: 0 microinches (minimum) gold plating over 00 microinches (nominal) nickel plating 0.0 MAX. (.6) PIN INDEX 0.00 TYP. (0.0) TYP. (.) 0.0 TYP. (.0) 0.0 (0.) MAX. radius for any pin 0.00 TYP (.06) (0.0) 0.00 TYP. (0.) Dimensions are in inches (mm) DATEL, Inc. Cabot Boulevard, Mansfield, MA 00- USA Tel: (0) help@datel.com MDA_DAC-.A0 Page of 6

6 ORDERING INFORMATION MODEL OPERATING TEMPERATURE RANGE RoHS RATING PACKAGE Binary Coding DAC-MC 0 to +70 C Non-RoHS DDIP DAC-ME 0 to +00 C Non-RoHS DDIP DAC-MM to + C Non-RoHS DDIP DAC-/ to + C Non-RoHS DDIP DAC-MC-C 0 to +70 C RoHS DDIP DAC-ME-C 0 to +00 C RoHS DDIP DAC-MM-C to + C RoHS DDIP DAC--C/ to + C RoHS DDIP DAC-GC 0 to +70 C Non-RoHS SMT DAC-GE 0 to +00 C Non-RoHS SMT DAC-GM to + C Non-RoHS SMT DAC-G/ to + C Non-RoHS SMT DAC-GC-C 0 to +70 C RoHS SMT DAC-GE-C 0 to +00 C RoHS SMT DAC-GM-C to + C RoHS SMT DAC-G-C/ to + C RoHS SMT Two s Complement Coding DAC-MC- 0 to +70 C Non-RoHS DDIP DAC-ME- 0 to +00 C Non-RoHS DDIP DAC-MM- to + C Non-RoHS DDIP DAC--/ to + C Non-RoHS DDIP DAC-MC--C 0 to +70 C RoHS DDIP DAC-ME--C 0 to +00 C RoHS DDIP DAC-MM--C to + C RoHS DDIP DAC---C/ to + C RoHS DDIP DAC-GC- 0 to +70 C Non-RoHS SMT DAC-GE- 0 to +00 C Non-RoHS SMT DAC-GM- to + C Non-RoHS SMT DAC-G-/ to + C Non-RoHS SMT DAC-GC--C 0 to +70 C RoHS SMT DAC-GE--C 0 to +00 C RoHS SMT DAC-GM--C to + C RoHS SMT DAC-G--C/ to + C RoHS SMT The MIL-STD- units are available under DSCC/DLA Drawing Number HXA (Solder Dipped) or HXC. Contact DATEL for product specifi cations DATEL is a registered trademark of DATEL, Inc. Cabot Boulevard, Mansfield, MA 00- USA ITAR and ISO 00/00 ED DATEL, Inc. makes no representation that the use of its products in the circuits described herein, or the use of other technical information contained herein, will not infringe upon existing or future patent rights. The descriptions contained herein do not imply the granting of licenses to make, use, or sell equipment constructed in accordance therewith. Specifi cations are subject to change without notice. 0 DATEL, Inc. help@datel.com MDA_DAC-.A0 Page 6 of 6

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